$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

The Supramolecular Chemistry of Organic–Inorganic Hybrid Materials 원문보기

Angewandte Chemie. international edition, v.45 no.36, 2006년, pp.5924 - 5948  

Descalzo, Ana B. (Instituto de Quí) ,  Martínez-Máñez, Ramón (mica Molecular Aplicada, Departamento de Quí) ,  Sancenón, Félix (mica, Universidad Polité) ,  Hoffmann, Katrin (cnica de Valencia, Camino de Vera s) ,  Rurack, Knut (Instituto de Quí)

Abstract AI-Helper 아이콘AI-Helper

The combination of nanomaterials as solid supports and supramolecular concepts has led to the development of hybrid materials with improved functionalities. These “hetero-supramolecular” ideas provide a means of bridging the gap between molecular chemistry, materials sciences, and nanote...

주제어

참고문헌 (171)

  1. Engines of Creation Drexler K. E. 1986 

  2. electronic version:http://www.foresight.org/EOC/. 

  3. Eng. Sci. Feynman R. P. 22 23 1960 

  4. electronic version:http://www.zyvex.com/nanotech/feynman.html. 

  5. 10.1002/3527607439 

  6. Ozin, Geoffrey A.. Nanochemistry: Synthesis in diminishing dimensions. Advanced materials, vol.4, no.10, 612-649.

  7. Top. Curr. Chem.2005 262 1-277 (Ed.: T. R. Kelly); 

  8. Purse, Byron W., Rebek Jr., Julius. Functional cavitands: Chemical reactivity in structured environments. Proceedings of the National Academy of Sciences of the United States of America, vol.102, no.31, 10777-10782.

  9. Grimsdale, Andrew C., Müllen, Klaus. Die Chemie organischer Nanomaterialien. Angewandte Chemie, vol.117, no.35, 5732-5772.

  10. Grimsdale, Andrew C., Müllen, Klaus. The Chemistry of Organic Nanomaterials. Angewandte Chemie. international edition, vol.44, no.35, 5592-5629.

  11. 10.1002/(SICI)1521-4095(200006)12:11<796::AID-ADMA796>3.0.CO;2-1 

  12. Haupt, Karsten. Imprinted polymers—Tailor-made mimics of antibodies and receptors. Chemical communications : Chem comm, vol.2003, no.2, 171-178.

  13. Microporous Mesoporous Mater.2004 73 1-108 (Eds.: S. Kaskel F. Schüth M. Stöcker). 

  14. Kitagawa, Susumu, Kitaura, Ryo, Noro, Shin-ichiro. Funktionale poröse Koordinationspolymere. Angewandte Chemie, vol.116, no.18, 2388-2430.

  15. Kitagawa, Susumu, Kitaura, Ryo, Noro, Shin-ichiro. Functional Porous Coordination Polymers. Angewandte Chemie. international edition, vol.43, no.18, 2334-2375.

  16. Antonietti, Markus, Ozin, Geoffrey A.. Promises and Problems of Mesoscale Materials Chemistry or Why Meso?. Chemistry : a European journal, vol.10, no.1, 28-41.

  17. Encyclopedia of Supramolecular Chemistry, Vols. 1, 2 2004 

  18. Onclin, Steffen, Ravoo, Bart Jan, Reinhoudt, David N.. Gestaltung der Siliciumoxidoberfläche durch selbstorganisierte Monoschichten. Angewandte Chemie, vol.117, no.39, 6438-6462.

  19. Onclin, Steffen, Ravoo, Bart Jan, Reinhoudt, David N.. Engineering Silicon Oxide Surfaces Using Self-Assembled Monolayers. Angewandte Chemie. international edition, vol.44, no.39, 6282-6304.

  20. Vinu, Ajayan, Hossain, Kazi Zakir, Ariga, Katsuhiko. Recent Advances in Functionalization of Mesoporous Silica. Journal of nanoscience and nanotechnology, vol.5, no.3, 347-371.

  21. Ford, David M, Simanek, Eric E, Shantz, Daniel F. Engineering nanospaces: ordered mesoporous silicas as model substrates for building complex hybrid materials. Nanotechnology, vol.16, no.7, S458-S475.

  22. Brühwiler, Dominik, Calzaferri, Gion. Molecular sieves as host materials for supramolecular organization. Microporous and mesoporous materials : the official journal of the International Zeolite Association, vol.72, no.1, 1-23.

  23. Banerjee, Sarbajit, Kahn, Michael G. C., Wong, Stanislaus S.. Rational Chemical Strategies for Carbon Nanotube Functionalization. Chemistry : a European journal, vol.9, no.9, 1898-1908.

  24. Rosi, N. L., Mirkin, C. A.. Nanostructures in Biodiagnostics. Chemical reviews, vol.105, no.4, 1547-1562.

  25. Katz, Eugenii, Willner, Itamar. Integrierte Hybridsysteme aus Nanopartikeln und Biomolekülen: Synthese, Eigenschaften und Anwendungen. Angewandte Chemie, vol.116, no.45, 6166-6235.

  26. Katz, Eugenii, Willner, Itamar. Integrated Nanoparticle–Biomolecule Hybrid Systems: Synthesis, Properties, and Applications. Angewandte Chemie. international edition, vol.43, no.45, 6042-6108.

  27. Sarikaya, Mehmet, Tamerler, Candan, Jen, Alex K. -Y., Schulten, Klaus, Baneyx, François. Molecular biomimetics: nanotechnology through biology. Nature materials, vol.2, no.9, 577-585.

  28. Wengel, Jesper. Nucleic acid nanotechnology—towards Ångström-scale engineering. Organic & biomolecular chemistry, vol.2, no.3, 277-280.

  29. Verma, Ayush, Rotello, Vincent M.. Surface recognition of biomacromolecules using nanoparticle receptors. Chemical communications : Chem comm, vol.2005, no.3, 303-312.

  30. Drechsler, Ulf, Erdogan, Belma, Rotello, Vincent M.. Nanoparticles: Scaffolds for Molecular Recognition. Chemistry : a European journal, vol.10, no.22, 5570-5579.

  31. Cooke, Graeme. Elektrochemische und photochemische Steuerung der Wirt-Gast-Komplexierung an Oberflächen. Angewandte Chemie, vol.115, no.40, 5008-5018.

  32. Cooke, Graeme. Electrochemical and Photochemical Control of Host–Guest Complexation at Surfaces. Angewandte Chemie. international edition, vol.42, no.40, 4860-4870.

  33. Brust, Mathias, Walker, Merryl, Bethell, Donald, Schiffrin, David J., Whyman, Robin. Synthesis of thiol-derivatised gold nanoparticles in a two-phase Liquid–Liquid system. Journal of the Chemical Society, Chemical communications, vol.1994, no.7, 801-802.

  34. Hostetler, M. J., Wingate, J. E., Zhong, C.-J., Harris, J. E., Vachet, R. W., Clark, M. R., Londono, J. D., Green, S. J., Stokes, J. J., Wignall, G. D., Glish, G. L., Porter, M. D., Evans, N. D., Murray, R. W.. Alkanethiolate Gold Cluster Molecules with Core Diameters from 1.5 to 5.2 nm: Core and Monolayer Properties as a Function of Core Size. Langmuir : the ACS journal of surfaces and colloids, vol.14, no.1, 17-30.

  35. Optical Properties of Metal Clusters Kreibig U. 1998 

  36. 10.1021/cr030698 

  37. Schreiber, Frank. Self-assembled monolayers: from ‘simple’ model systems to biofunctionalized interfaces. Journal of physics, an Institute of Physics journal. Condensed matter, vol.16, no.28, R881-R900.

  38. Gooding, J. Justin, Mearns, Freya, Yang, Wenrong, Liu, Jingquan. Self-Assembled Monolayers into the 21st Century: Recent Advances and Applications. Electroanalysis, vol.15, no.2, 81-96.

  39. 10.1002/1521-4095(200009)12:18<1315::AID-ADMA1315>3.0.CO;2-K 

  40. Major, R. C., Zhu, X.-Y.. The Surface Chelate Effect. Journal of the American Chemical Society, vol.125, no.28, 8454-8455.

  41. Astruc, Didier, Daniel, Marie-Christine, Ruiz, Jaime. Dendrimers and gold nanoparticles as exo-receptors sensing biologically important anions. Chemical communications : Chem comm, vol.2004, no.23, 2637-2649.

  42. 10.1039/b002578j 

  43. Labande, A., Ruiz, J., Astruc, D.. Supramolecular Gold Nanoparticles for the Redox Recognition of Oxoanions: Syntheses, Titrations, Stereoelectronic Effects, and Selectivity. Journal of the American Chemical Society, vol.124, no.8, 1782-1789.

  44. Daniel, Marie-Christine, Ruiz, Jaime, Nlate, Sylvain, Palumbo, Jennifer, Blais, Jean-Claude, Astruc, Didier. Gold nanoparticles containing redox-active supramolecular dendrons that recognize H2PO4. Chemical communications : Chem comm, vol.2001, no.19, 2000-2001.

  45. Daniel, M.-C., Ruiz, J., Nlate, S., Blais, J.-C., Astruc, D.. Nanoscopic Assemblies between Supramolecular Redox Active Metallodendrons and Gold Nanoparticles: Synthesis, Characterization, and Selective Recognition of H2PO4-, HSO4-, and Adenosine-5‘-Triphosphate (ATP2-) Anions. Journal of the American Chemical Society, vol.125, no.9, 2617-2628.

  46. Introducing the dendritic structures to the AuNPs did not increase these figures significantly which indicates that a further degree of complexity does not necessarily improve the performance of such hybrid systems. Sufficient proximity of the amidoferrocenyl moieties seems to be the decisive key parameter. 

  47. Beer, Paul D., Cormode, David P., Davis, Jason J.. Zinc metalloporphyrin-functionalised nanoparticle anion sensors. Chemical communications : Chem comm, vol.2004, no.4, 414-415.

  48. Arduini, Arturo, Demuru, Domenico, Pochini, Andrea, Secchi, Andrea. Recognition of quaternary ammonium cations by calix[4]arene derivatives supported on gold nanoparticles. Chemical communications : Chem comm, vol.2005, no.5, 645-647.

  49. Tshikhudo, T. Robert, Demuru, Domenico, Wang, Zhenxin, Brust, Mathias, Secchi, Andrea, Arduini, Arturo, Pochini, Andrea. Molecular Recognition by Calix[4]arene-Modified Gold Nanoparticles in Aqueous Solution. Angewandte Chemie, vol.117, no.19, 2973-2976.

  50. Tshikhudo, T. Robert, Demuru, Domenico, Wang, Zhenxin, Brust, Mathias, Secchi, Andrea, Arduini, Arturo, Pochini, Andrea. Molecular Recognition by Calix[4]arene-Modified Gold Nanoparticles in Aqueous Solution. Angewandte Chemie. international edition, vol.44, no.19, 2913-2916.

  51. 10.1002/1521-4095(20020705)14:13/14<966::AID-ADMA966>3.0.CO;2-D 

  52. Descalzo, Ana B., Marcos, M. Dolores, Martínez-Máñez, Ramón, Soto, Juan, Beltrán, Daniel, Amorós, Pedro. Anthrylmethylamine functionalised mesoporous silica-based materials as hybrid fluorescent chemosensors for ATP. Journal of materials chemistry, vol.15, no.27, 2721-2731.

  53. A dependence of the measured signal on the binding/signaling units in the presence of analytes has also been found in part for several amidoferrocenyl-AuNP combinations and certain target anions. Since this problem is nontrivial and nongeneral the reader is referred to the original publications for further details.[21]However according to Astruc and co‐workers such difficulties can be circumvented when using the dendronized systems.[22b] 

  54. 10.1002/(SICI)1521-3757(20000103)112:1<167::AID-ANGE167>3.0.CO;2-N 

  55. 10.1002/(SICI)1521-3773(20000103)39:1<160::AID-ANIE160>3.0.CO;2-V 

  56. Callegari, Andrea, Marcaccio, Massimo, Paolucci, Demis, Paolucci, Francesco, Tagmatarchis, Nikos, Tasis, Dimitrios, Vázquez, Ester, Prato, Maurizio. Anion recognition by functionalized single wall carbon nanotubes. Chemical communications : Chem comm, vol.2003, no.20, 2576-2577.

  57. Boal, A. K., Rotello, V. M.. Fabrication and Self-Optimization of Multivalent Receptors on Nanoparticle Scaffolds. Journal of the American Chemical Society, vol.122, no.4, 734-735.

  58. Boal, A. K., Rotello, V. M.. Redox-Modulated Recognition of Flavin by Functionalized Gold Nanoparticles. Journal of the American Chemical Society, vol.121, no.20, 4914-4915.

  59. Boal, A. K., Rotello, V. M.. Radial Control of Recognition and Redox Processes with Multivalent Nanoparticle Hosts. Journal of the American Chemical Society, vol.124, no.18, 5019-5024.

  60. Martinez-Manez, R., Sancenon, F.. Fluorogenic and Chromogenic Chemosensors and Reagents for Anions. Chemical reviews, vol.103, no.11, 4419-4476.

  61. 10.1002/1521-3757(20010202)113:3<502::AID-ANGE502>3.0.CO;2-A 

  62. 10.1002/1521-3773(20010202)40:3<486::AID-ANIE486>3.0.CO;2-P 

  63. Callan, John F., de Silva, A. Prasanna, Magri, David C.. Luminescent sensors and switches in the early 21st century. Tetrahedron, vol.61, no.36, 8551-8588.

  64. Coord. Chem. Rev. Valeur B. 205 2000 

  65. Mohr, Gerhard J.. Covalent bond formation as an analytical tool to optically detect neutral and anionic analytes. Sensors and actuators. B, Chemical, vol.107, no.1, 2-13.

  66. Mohr, Gerhard J.. Chromo- and Fluororeactands: Indicators for Detection of Neutral Analytes by Using Reversible Covalent-Bond Chemistry. Chemistry : a European journal, vol.10, no.5, 1082-1090.

  67. Thomas, K. G., Kamat, P. V.. Chromophore-Functionalized Gold Nanoparticles. Accounts of chemical research, vol.36, no.12, 888-898.

  68. Burda, C., Chen, X., Narayanan, R., El-Sayed, M. A.. Chemistry and Properties of Nanocrystals of Different Shapes. Chemical reviews, vol.105, no.4, 1025-1102.

  69. Stangl, J., Holý, V., Bauer, G.. Structural properties of self-organized semiconductor nanostructures. Reviews of modern physics, vol.76, no.3, 725-783.

  70. Michalet, X., Pinaud, F. F., Bentolila, L. A., Tsay, J. M., Doose, S., Li, J. J., Sundaresan, G., Wu, A. M., Gambhir, S. S., Weiss, S.. Quantum Dots for Live Cells, in Vivo Imaging, and Diagnostics. Science, vol.307, no.5709, 538-544.

  71. Medintz, Igor L., Uyeda, H. Tetsuo, Goldman, Ellen R., Mattoussi, Hedi. Quantum dot bioconjugates for imaging, labelling and sensing. Nature materials, vol.4, no.6, 435-446.

  72. 10.1002/1439-7641(20000804)1:1<18::AID-CPHC18>3.0.CO;2-L 

  73. 10.1021/jp992179 

  74. Lazarides, A. A., Schatz, G. C.. DNA-linked metal nanosphere materials: Fourier-transform solutions for the optical response. The Journal of chemical physics, vol.112, no.6, 2987-2993.

  75. Storhoff, J. J., Lazarides, A. A., Mirkin, C. A., Letsinger, R. L., Mucic, R. C., Schatz, G. C.. What Controls the Optical Properties of DNA-Linked Gold Nanoparticle Assemblies?. Journal of the American Chemical Society, vol.122, no.19, 4640-4650.

  76. Mucic, R. C., Storhoff, J. J., Mirkin, C. A., Letsinger, R. L.. DNA-Directed Synthesis of Binary Nanoparticle Network Materials. Journal of the American Chemical Society, vol.120, no.48, 12674-12675.

  77. Kim, Y., Johnson, R. C., Hupp, J. T.. Gold Nanoparticle-Based Sensing of “Spectroscopically Silent” Heavy Metal Ions. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.1, no.4, 165-167.

  78. Liu, J., Lu, Y.. A Colorimetric Lead Biosensor Using DNAzyme-Directed Assembly of Gold Nanoparticles. Journal of the American Chemical Society, vol.125, no.22, 6642-6643.

  79. Obare, S. O., Hollowell, R. E., Murphy, C. J.. Sensing Strategy for Lithium Ion Based on Gold Nanoparticles. Langmuir : the ACS journal of surfaces and colloids, vol.18, no.26, 10407-10410.

  80. Lin, S.-Y., Liu, S.-W., Lin, C.-M., Chen, C.-h.. Recognition of Potassium Ion in Water by 15-Crown-5 Functionalized Gold Nanoparticles. Analytical chemistry, vol.74, no.2, 330-335.

  81. Lin, S.-Y., Chen, C.-h., Lin, M.-C., Hsu, H.-F.. A Cooperative Effect of Bifunctionalized Nanoparticles on Recognition: Sensing Alkali Ions by Crown and Carboxylate Moieties in Aqueous Media. Analytical chemistry, vol.77, no.15, 4821-4828.

  82. Watanabe, Shigeru, Sonobe, Miyoko, Arai, Mari, Tazume, Yuki, Matsuo, Takeshi, Nakamura, Takashi, Yoshida, Katsuhira. Enhanced optical sensing of anions with amide-functionalized gold nanoparticles. Chemical communications : Chem comm, vol.2002, no.23, 2866-2867.

  83. Kubo, Yuji, Uchida, Sayaka, Kemmochi, Yuichi, Okubo, Tatsuya. Isothiouronium-modified gold nanoparticles capable of colorimetric sensing of oxoanions in aqueous MeOH solution. Tetrahedron letters: the international organ for the rapid publication of preliminary communications in organic chemistry, vol.46, no.25, 4369-4372.

  84. Chen, Y., Rosenzweig, Z.. Luminescent CdS Quantum Dots as Selective Ion Probes. Analytical chemistry, vol.74, no.19, 5132-5138.

  85. Isarov, A. V., Chrysochoos, J.. Optical and Photochemical Properties of Nonstoichiometric Cadmium Sulfide Nanoparticles: Surface Modification with Copper(II) Ions. Langmuir : the ACS journal of surfaces and colloids, vol.13, no.12, 3142-3149.

  86. Gattás-Asfura, Kerim M., Leblanc, Roger M.. Peptide-coated CdS quantum dots for the optical detection of copper(II) and silver(I). Chemical communications : Chem comm, vol.2003, no.21, 2684-2685.

  87. Montalti, M., Prodi, L., Zaccheroni, N., Falini, G.. Solvent-Induced Modulation of Collective Photophysical Processes in Fluorescent Silica Nanoparticles. Journal of the American Chemical Society, vol.124, no.45, 13540-13546.

  88. Montalti, Marco, Prodi, Luca, Zaccheroni, Nelsi. Fluorescence quenching amplification in silica nanosensors for metal ions. Journal of materials chemistry, vol.15, no.27, 2810-2814.

  89. 10.1039/b002116o 

  90. Vogtle, F., Gestermann, S., Kauffmann, C., Ceroni, P., Vicinelli, V., Balzani, V.. Coordination of Co2+ Ions in the Interior of Poly(propylene amine) Dendrimers Containing Fluorescent Dansyl Units in the Periphery. Journal of the American Chemical Society, vol.122, no.42, 10398-10404.

  91. Rurack, Knut. Flipping the light switch ‘ON’ – the design of sensor molecules that show cation-induced fluorescence enhancement with heavy and transition metal ions. Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy, vol.57, no.11, 2161-2195.

  92. Balzani, Vincenzo, Ceroni, Paola, Maestri, Mauro, Vicinelli, Veronica. Light-harvesting dendrimers. Current opinion in chemical biology, vol.7, no.6, 657-665.

  93. Brasola, Elena, Mancin, Fabrizio, Rampazzo, Enrico, Tecilla, Paolo, Tonellato, Umberto. A fluorescence nanosensor for Cu2+ on silica particles. Chemical communications : Chem comm, vol.2003, no.24, 3026-3027.

  94. Rampazzo, Enrico, Brasola, Elena, Marcuz, Silvia, Mancin, Fabrizio, Tecilla, Paolo, Tonellato, Umberto. Surface modification of silica nanoparticles: a new strategy for the realization of self-organized fluorescence chemosensors. Journal of materials chemistry, vol.15, no.27, 2687-2696.

  95. Méallet-Renault, Rachel, Pansu, Robert, Amigoni-Gerbier, Sonia, Larpent, Chantal. Metal-chelating nanoparticles as selective fluorescent sensor for Cu2+. Chemical communications : Chem comm, vol.2004, no.20, 2344-2345.

  96. Kurner, J. M., Wolfbeis, O. S., Klimant, I.. Homogeneous Luminescence Decay Time-Based Assay Using Energy Transfer from Nanospheres. Analytical chemistry, vol.74, no.9, 2151-2156.

  97. Doyle, E. L., Hunter, C. A., Phillips, H. C., Webb, S. J., Williams, N. H.. Cooperative Binding at Lipid Bilayer Membrane Surfaces. Journal of the American Chemical Society, vol.125, no.15, 4593-4599.

  98. 10.1002/(SICI)1521-3757(19991018)111:20<3247::AID-ANGE3247>3.0.CO;2-S 

  99. 10.1002/(SICI)1521-3773(19991018)38:20<3061::AID-ANIE3061>3.0.CO;2-A 

  100. Basabe-Desmonts, L., Beld, J., Zimmerman, R. S., Hernando, J., Mela, P., Garcia Parajo, M. F., van Hulst, N. F., van den Berg, A., Reinhoudt, D. N., Crego-Calama, M.. A Simple Approach to Sensor Discovery and Fabrication on Self-Assembled Monolayers on Glass. Journal of the American Chemical Society, vol.126, no.23, 7293-7299.

  101. 10.1002/1521-4095(200108)13:15<1171::AID-ADMA1171>3.0.CO;2-7 

  102. Zheng, Y., Orbulescu, J., Ji, X., Andreopoulos, F. M., Pham, S. M., Leblanc, R. M.. Development of Fluorescent Film Sensors for the Detection of Divalent Copper. Journal of the American Chemical Society, vol.125, no.9, 2680-2686.

  103. Ipe, B. I., Mahima, S., Thomas, K. G.. Light-Induced Modulation of Self-Assembly on Spiropyran-Capped Gold Nanoparticles: A Potential System for the Controlled Release of Amino Acid Derivatives. Journal of the American Chemical Society, vol.125, no.24, 7174-7175.

  104. Hawker, Craig J., Wooley, Karen L.. The Convergence of Synthetic Organic and Polymer Chemistries. Science, vol.309, no.5738, 1200-1205.

  105. Hahn, Uwe, Elhabiri, Mourad, Trabolsi, Ali, Herschbach, Haiko, Leize, Emmanuelle, Van Dorsselaer, Alain, Albrecht-Gary, Anne-Marie, Nierengarten, Jean-François. Supramolecular Click Chemistry with a Bisammonium-C60 Substrate and a Ditopic Crown Ether Host. Angewandte Chemie, vol.117, no.33, 5472-5475.

  106. Hahn, Uwe, Elhabiri, Mourad, Trabolsi, Ali, Herschbach, Haiko, Leize, Emmanuelle, Van Dorsselaer, Alain, Albrecht-Gary, Anne-Marie, Nierengarten, Jean-François. Supramolecular Click Chemistry with a Bisammonium-C60 Substrate and a Ditopic Crown Ether Host. Angewandte Chemie. international edition, vol.44, no.33, 5338-5341.

  107. 10.1002/1521-3757(20010601)113:11<2056::AID-ANGE2056>3.0.CO;2-W 

  108. 10.1002/1521-3773(20010601)40:11<2004::AID-ANIE2004>3.0.CO;2-5 

  109. Vilar, R.. Hydrogen-Bonding Templated Assemblies. Structure and bonding, vol.111, 85-138.

  110. Reinhoudt, D. N., Crego-Calama, M.. Synthesis Beyond the Molecule. Science, vol.295, no.5564, 2403-2407.

  111. Ercolani, G.. Assessment of Cooperativity in Self-Assembly. Journal of the American Chemical Society, vol.125, no.51, 16097-16103.

  112. Liu, J., Alvarez, J., Ong, W., Kaifer, A. E.. Network Aggregates Formed by C60 and Gold Nanoparticles Capped with &ggr;-Cyclodextrin Hosts. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.1, no.2, 57-60.

  113. Feldheim, Daniel L., Keating, Christine D.. Self-assembly of single electron transistors and related devices. Chemical Society reviews, vol.27, no.1, 1-12.

  114. Liu, Y., Wang, H., Chen, Y., Ke, C.-F., Liu, M.. Supramolecular Aggregates Constructed from Gold Nanoparticles and L-Try-CD Polypseudorotaxanes as Captors for Fullerenes. Journal of the American Chemical Society, vol.127, no.2, 657-666.

  115. Crespo‐Biel, Olga, Jukovic, Amela, Karlsson, Maria, Reinhoudt, David N., Huskens, Jurriaan. Multivalent aggregation of cyclodextrin gold nanoparticles and adamantyl‐terminated guest molecules. Israel journal of chemistry, vol.45, no.3, 353-362.

  116. Mulder, Alart, Huskens, Jurriaan, Reinhoudt, David N.. Multivalency in supramolecular chemistry and nanofabrication. Organic & biomolecular chemistry, vol.2, no.23, 3409-3424.

  117. Naka, K., Itoh, H., Chujo, Y.. Temperature-Dependent Reversible Self-Assembly of Gold Nanoparticles into Spherical Aggregates by Molecular Recognition between Pyrenyl and Dinitrophenyl Units. Langmuir : the ACS journal of surfaces and colloids, vol.19, no.13, 5496-5501.

  118. Corbellini, F., Mulder, A., Sartori, A., Ludden, M. J. W., Casnati, A., Ungaro, R., Huskens, J., Crego-Calama, M., Reinhoudt, D. N.. Assembly of a Supramolecular Capsule on a Molecular Printboard. Journal of the American Chemical Society, vol.126, no.51, 17050-17058.

  119. Crespo-Biel, O., Dordi, B., Reinhoudt, D. N., Huskens, J.. Supramolecular Layer-by-Layer Assembly: Alternating Adsorptions of Guest- and Host-Functionalized Molecules and Particles Using Multivalent Supramolecular Interactions. Journal of the American Chemical Society, vol.127, no.20, 7594-7600.

  120. Wanunu, M., Popovitz-Biro, R., Cohen, H., Vaskevich, A., Rubinstein, I.. Coordination-Based Gold Nanoparticle Layers. Journal of the American Chemical Society, vol.127, no.25, 9207-9215.

  121. Morisue, Mitsuhiko, Yamatsu, Shigeru, Haruta, Noriko, Kobuke, Yoshiaki. Surface-Grafted Multiporphyrin Arrays as Light-Harvesting Antennae to Amplify Photocurrent Generation. Chemistry : a European journal, vol.11, no.19, 5563-5574.

  122. Onclin, Steffen, Huskens, Jurriaan, Ravoo, Bart Jan, Reinhoudt, David N.. Molecular Boxes on a Molecular Printboard: Encapsulation of Anionic Dyes in Immobilized Dendrimers. Small, vol.1, no.8, 852-857.

  123. Auletta, Tommaso, Dordi, Barbara, Mulder, Alart, Sartori, Andrea, Onclin, Steffen, Bruinink, Christiaan M., Péter, Mária, Nijhuis, Christian A., Beijleveld, Hans, Schönherr, Holger, Vancso, G. Julius, Casnati, Alessandro, Ungaro, Rocco, Ravoo, Bart Jan, Huskens, Jurriaan, Reinhoudt, David N.. Writing Patterns of Molecules on Molecular Printboards. Angewandte Chemie, vol.116, no.3, 373-377.

  124. Auletta, Tommaso, Dordi, Barbara, Mulder, Alart, Sartori, Andrea, Onclin, Steffen, Bruinink, Christiaan M., Péter, Mária, Nijhuis, Christian A., Beijleveld, Hans, Schönherr, Holger, Vancso, G. Julius, Casnati, Alessandro, Ungaro, Rocco, Ravoo, Bart Jan, Huskens, Jurriaan, Reinhoudt, David N.. Writing Patterns of Molecules on Molecular Printboards. Angewandte Chemie. international edition, vol.43, no.3, 369-373.

  125. Mulder, Alart, Onclin, Steffen, Péter, Mária, Hoogenboom, Jacob P., Beijleveld, Hans, ter Maat, Jurjen, García‐Parajó, María F., Ravoo, Bart Jan, Huskens, Jurriaan, van Hulst, Niek F., Reinhoudt, David N.. Molecular Printboards on Silicon Oxide: Lithographic Patterning of Cyclodextrin Monolayers with Multivalent, Fluorescent Guest Molecules. Small, vol.1, no.2, 242-253.

  126. 10.1002/(SICI)1521-3757(19980302)110:5<568::AID-ANGE568>3.0.CO;2-X 

  127. 10.1002/(SICI)1521-3773(19980316)37:5<550::AID-ANIE550>3.0.CO;2-G 

  128. Samitsu, Sadaki, Shimomura, Takeshi, Ito, Kohzo, Hara, Masahiko. Immobilization of molecular tubes on self-assembled monolayers of β-cyclodextrin and dodecanethiol inclusion complexes. Applied physics letters, vol.85, no.17, 3875-3877.

  129. Banerjee, I. A., Yu, L., Matsui, H.. Application of Host−Guest Chemistry in Nanotube-Based Device Fabrication: Photochemically Controlled Immobilization of Azobenzene Nanotubes on Patterned &agr;-CD Monolayer/Au Substrates via Molecular Recognition. Journal of the American Chemical Society, vol.125, no.32, 9542-9543.

  130. Chen, Y.-f., Banerjee, I. A., Yu, L., Djalali, R., Matsui, H.. Attachment of Ferrocene Nanotubes on &bgr;-Cyclodextrin Self-Assembled Monolayers with Molecular Recognitions. Langmuir : the ACS journal of surfaces and colloids, vol.20, no.20, 8409-8413.

  131. Bryce, Martin R., Cooke, Graeme, Duclairoir, Florence M. A., John, Phillip, Perepichka, Dmitrii F., Polwart, Neil, Rotello, Vincent M., Fraser Stoddart, J., Tseng, Hsian-Rong. Surface confined pseudorotaxanes with electrochemically controllable complexation properties. Journal of materials chemistry, vol.13, no.9, 2111-2117.

  132. Appl. Phys. Lett. Huang T. J. 85 2004 

  133. Liu, Yi, Flood, Amar H., Bonvallet, Paul A., Vignon, Scott A., Northrop, Brian H., Tseng, Hsian-Rong, Jeppesen, Jan O., Huang, Tony J., Brough, Branden, Baller, Marko, Magonov, Sergei, Solares, Santiago D., Goddard, William A., Ho, Chih-Ming, Stoddart, J. Fraser. Linear Artificial Molecular Muscles. Journal of the American Chemical Society, vol.127, no.27, 9745-9759.

  134. Shirai, Y., Osgood, A. J., Zhao, Y., Kelly, K. F., Tour, J. M.. Directional Control in Thermally Driven Single-Molecule Nanocars. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.5, no.11, 2330-2334.

  135. Mal, Nawal Kishor, Fujiwara, Masahiro, Tanaka, Yuko. Photocontrolled reversible release of guest molecules from coumarin-modified mesoporous silica. Nature, vol.421, no.6921, 350-353.

  136. Mal, N. K., Fujiwara, M., Tanaka, Y., Taguchi, T., Matsukata, M.. Photo-Switched Storage and Release of Guest Molecules in the Pore Void of Coumarin-Modified MCM-41. Chemistry of materials : a publication of the American Chemical Society, vol.15, no.17, 3385-3394.

  137. Casasus, R., Marcos, M. D., Martinez-Manez, R., Ros-Lis, J. V., Soto, J., Villaescusa, L. A., Amoros, P., Beltran, D., Guillem, C., Latorre, J.. Toward the Development of Ionically Controlled Nanoscopic Molecular Gates. Journal of the American Chemical Society, vol.126, no.28, 8612-8613.

  138. Ros-Lis, J. V., Garcia, B., Jimenez, D., Martinez-Manez, R., Sancenon, F., Soto, J., Gonzalvo, F., Valldecabres, M. C.. Squaraines as Fluoro−Chromogenic Probes for Thiol-Containing Compounds and Their Application to the Detection of Biorelevant Thiols. Journal of the American Chemical Society, vol.126, no.13, 4064-4065.

  139. Yang, Q., Wang, S., Fan, P., Wang, L., Di, Y., Lin, K., Xiao, F.-S.. pH-Responsive Carrier System Based on Carboxylic Acid Modified Mesoporous Silica and Polyelectrolyte for Drug Delivery. Chemistry of materials : a publication of the American Chemical Society, vol.17, no.24, 5999-6003.

  140. Hernandez, R., Tseng, H.-R., Wong, J. W., Stoddart, J. F., Zink, J. I.. An Operational Supramolecular Nanovalve. Journal of the American Chemical Society, vol.126, no.11, 3370-3371.

  141. Nguyen, Thoi D., Tseng, Hsian-Rong, Celestre, Paul C., Flood, Amar H., Liu, Yi, Stoddart, J. Fraser, Zink, Jeffrey I.. A reversible molecular valve. Proceedings of the National Academy of Sciences of the United States of America, vol.102, no.29, 10029-10034.

  142. Lai, C.-Y., Trewyn, B. G., Jeftinija, D. M., Jeftinija, K., Xu, S., Jeftinija, S., Lin, V. S.-Y.. A Mesoporous Silica Nanosphere-Based Carrier System with Chemically Removable CdS Nanoparticle Caps for Stimuli-Responsive Controlled Release of Neurotransmitters and Drug Molecules. Journal of the American Chemical Society, vol.125, no.15, 4451-4459.

  143. Gruenhagen, Jason A., Lai, Cheng-Yu, Radu, Daniela R., Lin, Victor S.-Y., Yeung, Edward S.. Real-Time Imaging of Tunable Adenosine 5-Triphosphate Release from an MCM-41-Type Mesoporous Silica Nanosphere-Based Delivery System. Applied spectroscopy, vol.59, no.4, 424-431.

  144. Giri, Supratim, Trewyn, Brian G., Stellmaker, Michael P., Lin, Victor S.-Y.. Stimuli-Responsive Controlled-Release Delivery System Based on Mesoporous Silica Nanorods Capped with Magnetic Nanoparticles. Angewandte Chemie, vol.117, no.32, 5166-5172.

  145. Giri, Supratim, Trewyn, Brian G., Stellmaker, Michael P., Lin, Victor S.-Y.. Stimuli-Responsive Controlled-Release Delivery System Based on Mesoporous Silica Nanorods Capped with Magnetic Nanoparticles. Angewandte Chemie. international edition, vol.44, no.32, 5038-5044.

  146. Nednoor, P., Chopra, N., Gavalas, V., Bachas, L. G., Hinds, B. J.. Reversible Biochemical Switching of Ionic Transport through Aligned Carbon Nanotube Membranes. Chemistry of materials : a publication of the American Chemical Society, vol.17, no.14, 3595-3599.

  147. Sakai, N., Mareda, J., Matile, S.. Rigid-Rod Molecules in Biomembrane Models: From Hydrogen-Bonded Chains to Synthetic Multifunctional Pores. Accounts of chemical research, vol.38, no.2, 79-87.

  148. Anal. Chem. Umezawa Y. 320 76 2004 10.1021/ac0416259 

  149. Gokel, George W., Mukhopadhyay, Anindita. Synthetic models of cation-conducting channels. Chemical Society reviews, vol.30, no.5, 274-286.

  150. Liu, Nanguo, Chen, Zhu, Dunphy, Darren R., Jiang, Ying-Bing, Assink, Roger A., Brinker, C. Jeffrey. Photoresponsive Nanocomposite Formed by Self-Assembly of an Azobenzene-Modified Silane. Angewandte Chemie, vol.115, no.15, 1773-1776.

  151. Liu, Nanguo, Chen, Zhu, Dunphy, Darren R., Jiang, Ying-Bing, Assink, Roger A., Brinker, C. Jeffrey. Photoresponsive Nanocomposite Formed by Self-Assembly of an Azobenzene-Modified Silane. Angewandte Chemie. international edition, vol.42, no.15, 1731-1734.

  152. Liu, N. G., Dunphy, D. R., Atanassov, P., Bunge, S. D., Chen, Z., Lopez, G. P., Boyle, T. J., Brinker, C. J.. Photoregulation of Mass Transport through a Photoresponsive Azobenzene-Modified Nanoporous Membrane. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.4, no.4, 551-554.

  153. Fu, Q., Rao, G.V.R., Ista, L.K., Wu, Y., Andrzejewski, B.P., Sklar, L.A., Ward, T.L., López, G.P.. Control of Molecular Transport Through Stimuli-Responsive Ordered Mesoporous Materials. Advanced materials, vol.15, no.15, 1262-1266.

  154. Zheng, Wenxia, Maye, Mathew M., Leibowitz, Frank L., Zhong, Chuan-Jian. An infrared reflectance spectroscopic study of a pH-tunable network of nanoparticles linked by hydrogen bonding. The Analyst : An International Journal of Analytical and Bioanalytical Science, vol.125, no.1, 17-20.

  155. Zheng, W., Maye, M. M., Leibowitz, F. L., Zhong, C.-J.. Imparting Biomimetic Ion-Gating Recognition Properties to Electrodes with a Hydrogen-Bonding Structured Core−Shell Nanoparticle Network. Analytical chemistry, vol.72, no.10, 2190-2199.

  156. Lin, V. S.-Y., Lai, C.-Y., Huang, J., Song, S.-A., Xu, S.. Molecular Recognition Inside of Multifunctionalized Mesoporous Silicas: Toward Selective Fluorescence Detection of Dopamine and Glucosamine. Journal of the American Chemical Society, vol.123, no.46, 11510-11511.

  157. Radu, D. R., Lai, C.-Y., Wiench, J. W., Pruski, M., Lin, V. S.-Y.. Gatekeeping Layer Effect: A Poly(lactic acid)-coated Mesoporous Silica Nanosphere-Based Fluorescence Probe for Detection of Amino-Containing Neurotransmitters. Journal of the American Chemical Society, vol.126, no.6, 1640-1641.

  158. Descalzo, A. B., Rurack, K., Weisshoff, H., Martinez-Manez, R., Marcos, M. D., Amoros, P., Hoffmann, K., Soto, J.. Rational Design of a Chromo- and Fluorogenic Hybrid Chemosensor Material for the Detection of Long-Chain Carboxylates. Journal of the American Chemical Society, vol.127, no.1, 184-200.

  159. Comes, M., Marcos, M. D., Martínez-Máñez, R., Sancenón, F., Soto, J., Villaescusa, L. A., Amorós, P., Beltrán, D.. Chromogenic Discrimination of Primary Aliphatic Amines in Water with Functionalized Mesoporous Silica. Advanced materials, vol.16, no.20, 1783-1786.

  160. Inumaru, Kei, Inoue, Yuta, Kakii, Shintaro, Nakano, Tomoyasu, Yamanaka, Shoji. Organic–Inorganic Cooperative Molecular Recognition in Nanostructure of Alkyl-grafted MCM-41. Chemistry letters, vol.32, no.12, 1110-1111.

  161. Inumaru, Kei, Inoue, Yuta, Kakii, Shintaro, Nakano, Tomoyasu, Yamanaka, Shoji. Molecular selective adsorption of dilute alkylphenols and alkylanilines from water by alkyl-grafted MCM-41: tunability of the cooperative organic–inorganic function in the nanostructure. Physical chemistry chemical physics : PCCP, vol.6, no.12, 3133-3139.

  162. Comes, María, Rodríguez-López, Gertrudis, Marcos, M. Dolores, Martínez-Máñez, Ramón, Sancenón, Félix, Soto, Juan, Villaescusa, Luis A., Amorós, Pedro, Beltrán, Daniel. Host Solids Containing Nanoscale Anion-Binding Pockets and Their Use in Selective Sensing Displacement Assays. Angewandte Chemie, vol.117, no.19, 2978-2982.

  163. Comes, María, Rodríguez-López, Gertrudis, Marcos, M. Dolores, Martínez-Máñez, Ramón, Sancenón, Félix, Soto, Juan, Villaescusa, Luis A., Amorós, Pedro, Beltrán, Daniel. Host Solids Containing Nanoscale Anion-Binding Pockets and Their Use in Selective Sensing Displacement Assays. Angewandte Chemie. international edition, vol.44, no.19, 2918-2922.

  164. Yang, H.-H., Zhang, S.-Q., Yang, W., Chen, X.-L., Zhuang, Z.-X., Xu, J.-G., Wang, X.-R.. Molecularly Imprinted Sol−Gel Nanotubes Membrane for Biochemical Separations. Journal of the American Chemical Society, vol.126, no.13, 4054-4055.

  165. Johnston, Angus P. R., Battersby, Bronwyn J., Lawrie, Gwendolyn A., Trau, Matt. Porous functionalised silica particles: a potential platform for biomolecular screening. Chemical communications : Chem comm, vol.2005, no.7, 848-850.

  166. Roux, S., Garcia, B., Bridot, J.-L., Salome, M., Marquette, C., Lemelle, L., Gillet, P., Blum, L., Perriat, P., Tillement, O.. Synthesis, Characterization of Dihydrolipoic Acid Capped Gold Nanoparticles, and Functionalization by the Electroluminescent Luminol. Langmuir : the ACS journal of surfaces and colloids, vol.21, no.6, 2526-2536.

  167. Diamond, Dermot. Peer Reviewed: Internet-Scale Sensing. Analytical chemistry, vol.76, no.15, 278 A-286 A.

  168. Mendes, P.M., Flood, A.H., Stoddart, J.F.. Nanoelectronic devices from self-organized molecular switches. Applied physics. A, Materials science & processing, vol.80, no.6, 1197-1209.

  169. Wu, Wei, Wieckowski, Sébastien, Pastorin, Giorgia, Benincasa, Monica, Klumpp, Cédric, Briand, Jean-Paul, Gennaro, Renato, Prato, Maurizio, Bianco, Alberto. Targeted Delivery of Amphotericin B to Cells by Using Functionalized Carbon Nanotubes. Angewandte Chemie, vol.117, no.39, 6516-6520.

  170. Wu, Wei, Wieckowski, Sébastien, Pastorin, Giorgia, Benincasa, Monica, Klumpp, Cédric, Briand, Jean-Paul, Gennaro, Renato, Prato, Maurizio, Bianco, Alberto. Targeted Delivery of Amphotericin B to Cells by Using Functionalized Carbon Nanotubes. Angewandte Chemie. international edition, vol.44, no.39, 6358-6362.

관련 콘텐츠

저작권 관리 안내
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로