$\require{mediawiki-texvc}$

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.

[해외논문] Synthesis of Porous and Highly Crystallinity Vanadium Phosphorus Oxide Catalysts by Multifunctional Biomass-Based Deep Eutectic Solvents

The journal of physical chemistry. B, Condensed matter, materials, surfaces, interfaces & biophysical, v.124 no.18, 2020년, pp.3743 - 3753  

He, Bin (Beijing Key Laboratory of Ionic Liquids Clean Process, CAS Key Laboratory of Green Process and Engineering, State Key Laboratory of Multiphase Complex Systems , Institute of Process Engineering , Beijing , 100190 , P. R. China) ,  Li, Yingwei (Beijing Key Laboratory of Ionic Liquids Clean Process, CAS Key Laboratory of Green Process and Engineering, State Key Laboratory of Multiphase Complex Systems , Institute of Process Engineering , Beijing , 100190 , P. R. China) ,  Zhang, Ting (Beijing Key Laboratory of Ionic Liquids Clean Process, CAS Key Laboratory of Green Process and Engineering, State Key Laboratory of Multiphase Complex Systems , Institute of Process Engineering , Beijing , 100190 , P. R. China) ,  Shi, Yanan (Beijing Key Laboratory of Ionic Liquids Clean Process, CAS Key Laboratory of Green Process and Engineering, State Key Laboratory of Multiphase Complex Systems , Institute of Process Engineering , Beijing , 100190 , P.) ,  Li, Kang ,  Dai, Fei ,  Zhang, Ruirui ,  Liu, Ruixia ,  Zhang, Suojiang

Abstract AI-Helper 아이콘AI-Helper

Deep eutectic solvents (DESs) as a novel class of ionic liquid analogues has been widely used in various fields. Herein, a multifunctional biomass-based DES composed of choline chloride (ChCl) and glucose (GLU) was synthesized and used for the modification of vanadium phosphorus oxide (VPO) catalyst...

참고문헌 (74)

  1. Zhang, Jian, Su, Dangsheng, Zhang, Aihua, Wang, Di, Schlögl, Robert, Hébert, Cécile. Nanocarbon as Robust Catalyst: Mechanistic Insight into Carbon-Mediated Catalysis. Angewandte Chemie. international edition, vol.46, no.38, 7319-7323.

  2. Zhang, Jian, Liu, Xi, Blume, Raoul, Zhang, Aihua, Schlögl, Robert, Su, Dang Sheng. Surface-Modified Carbon Nanotubes Catalyze Oxidative Dehydrogenation of n -Butane. Science, vol.322, no.5898, 73-77.

  3. Heenemann, Maria, Heine, Christian, Hävecker, Michael, Trunschke, Annette, Schlögl, Robert. Influence of Steam on a Vanadyl Pyrophosphate Catalyst During Propane Oxidation. The journal of physical chemistry. B, Condensed matter, materials, surfaces, interfaces & biophysical, vol.122, no.2, 695-704.

  4. Dai, Fei, Li, Zihang, Chen, Xuejing, He, Bin, Liu, Ruixia, Zhang, Suojiang. Synthesis of vanadium phosphorus oxide catalysts promoted by iron-based ionic liquids and their catalytic performance in selective oxidation ofn-butane. Catalysis science & technology, vol.8, no.17, 4515-4525.

  5. Kube, Pierre, Frank, Benjamin, Wrabetz, Sabine, Kröhnert, Jutta, Hävecker, Michael, Velasco‐Vélez, Juan, Noack, Johannes, Schlögl, Robert, Trunschke, Annette. Functional Analysis of Catalysts for Lower Alkane Oxidation. ChemCatChem, vol.9, no.4, 573-585.

  6. Guo, Xinpeng, Yang, Dan, Zuo, Cuncun, Peng, Zhijian, Li, Chunshan, Zhang, Suojiang. Catalysts, Process Optimization, and Kinetics for the Production of Methyl Acrylate over Vanadium Phosphorus Oxide Catalysts. Industrial & engineering chemistry research, vol.56, no.20, 5860-5871.

  7. He, Bin, Nan, Linlin, Li, Zihang, Wen, Bo, Niu, Jingyang, Liu, Ruixia. Effect of Mo Species on the Selective Oxidation of n‐Butane to Maleic Anhydride over Mo‐Promoted VPP. ChemistrySelect, vol.4, no.2, 662-669.

  8. 10.1039/9781847553300-00001 

  9. Trifirò, Ferruccio, Grasselli, Robert K.. How the Yield of Maleic Anhydride in n-Butane Oxidation, Using VPO Catalysts, was Improved Over the Years. Topics in catalysis, vol.57, no.14, 1188-1195.

  10. Taufiq-Yap, Y. H., Nurul Suziana, N. M., Hussein, M. Z.. Influences of the Various Metal Dopants for the Nanosized Vanadium Phosphate Catalysts. Catalysis letters, vol.141, no.1, 136-148.

  11. Hutchings, Graham J.. Vanadium phosphate: a new look at the active components of catalysts for the oxidation of butane to maleic anhydride. Journal of materials chemistry, vol.14, no.23, 3385-3395.

  12. Volta, J.C.. Vanadium phosphorus oxides, a reference catalyst for mild oxidation of light alkanes: a review. Comptes rendus de l'Académie des sciences. Chemistry. Série II. Chimie, vol.3, no.9, 717-723.

  13. Guliants, V.V.; Benziger, J.B. etc. "Effect of promoters for n-butane oxidation to maleic anhydride over vanadium–phosphorus‐oxide catalysts: comparison with supported vanadia catalysts." Catalysis letters, v.62 no.2/4 (1999), pp. 87-91, doi:10.1023/A:1019071727618.

  14. Johnson, Jack W., Johnston, David C., Jacobson, Allan J., Brody, John F.. Preparation and characterization of vanadyl hydrogen phosphate hemihydrate and its topotactic transformation to vanadyl pyrophosphate. Journal of the American Chemical Society, vol.106, no.26, 8123-8128.

  15. Cavani, Fabrizio, Luciani, Silvia, Esposti, Elisa Degli, Cortelli, Carlotta, Leanza, Roberto. Surface Dynamics of A Vanadyl Pyrophosphate Catalyst for n-Butane Oxidation to Maleic Anhydride: An In Situ Raman and Reactivity Study of the Effect of the P/V Atomic Ratio. Chemistry : a European journal, vol.16, no.5, 1646-1655.

  16. Gautier, Romain, Gautier, Régis, Hernandez, Olivier, Audebrand, Nathalie, Bataille, Thierry, Roiland, Claire, Elkaïm, Erik, Le Pollès, Laurent, Furet, Eric, Le Fur, Eric. DFT-assisted structure determination of α1- and α2-VOPO4: new insights into the understanding of the catalytic performances of vanadium phosphates. Dalton transactions : an international journal of inorganic chemistry, vol.42, no.22, 8124-8131.

  17. Weng, Weihao, Al Otaibi, Raja, Alhumaimess, Mosaed, Conte, Marco, Bartley, Jonathan K., Dummer, Nicholas F., Hutchings, Graham J., Kiely, Christopher J.. Controlling vanadium phosphate catalyst precursor morphology by adding alkane solvents in the reduction step of VOPO4·2H2O to VOHPO4·0.5H2O. Journal of materials chemistry, vol.21, no.40, 16136-16146.

  18. Carreon, Moises A., Guliants, Vadim V., Pierelli, Francesca, Cavani, Fabrizio. Ordered Mesostructured Mixed Metal Oxides: Microporous VPO Phases for n-Butane Oxidation to Maleic Anhydride. Catalysis letters, vol.92, no.1, 11-16.

  19. Wu, H.Y., Wang, H.B., Liu, X.H., Li, J.H., Yang, M.H., Huang, C.J., Weng, W.Z., Wan, H.L.. Samarium-modified vanadium phosphate catalyst for the selective oxidation of n-butane to maleic anhydride. Applied surface science, vol.351, 243-249.

  20. Luciani, S., Cavani, F., Dal Santo, V., Dimitratos, N., Rossi, M., Bianchi, C.L.. The mechanism of surface doping in vanadyl pyrophosphate, catalyst for n-butane oxidation to maleic anhydride: The role of Au promoter. Catalysis today, vol.169, no.1, 200-206.

  21. Leong, L.K., Chin, K.S., Taufiq-Yap, Y.H.. The effect of Bi promoter on vanadium phosphate catalysts synthesized via sesquihydrate route. Catalysis today, vol.164, no.1, 341-346.

  22. Taufiq-Yap, Y. H., Theam, K. L., Hutchings, G. J., Dummer, N., Bartley, J. K.. The Effect of Cr, Ni, Fe, and Mn Dopants on the Performance of Hydrothermal Synthesized Vanadium Phosphate Catalysts forn-Butane Oxidation. Petroleum science and technology, vol.28, no.10, 997-1012.

  23. Lin, Z., Weng, W., Kiely, C.J., Dummer, N.F., Bartley, J.K., Hutchings, G.J.. The synthesis of highly crystalline vanadium phosphate catalysts using a diblock copolymer as a structure directing agent. Catalysis today, vol.157, no.1, 211-216.

  24. Alhumaimess, Mosaed, Lin, Zhongjie, Dummer, Nicholas F., Taylor, Stuart H., Hutchings, Graham J., Bartley, Jonathan K.. Highly crystalline vanadium phosphate catalysts synthesized using poly(acrylic acid-co-maleic acid) as a structure directing agent. Catalysis science & technology, vol.6, no.9, 2910-2917.

  25. Ivars-Barceló, Francisco, Hutchings, Graham J., Bartley, Jonathan K., Taylor, Stuart H., Sutter, Peter, Amorós, Pedro, Sanchis, Rut, Solsona, Benjamín. Relationship between bulk phase, near surface and outermost atomic layer of VPO catalysts and their catalytic performance in the oxidative dehydrogenation of ethane. Journal of catalysis, vol.354, 236-249.

  26. Santra, C., Shah, S., Mondal, A., Pandey, J.K., Panda, A.B., Maity, S., Chowdhury, B.. Synthesis, characterization of VPO catalyst dispersed on mesoporous silica surface and catalytic activity for cyclohexane oxidation reaction. Microporous and mesoporous materials : the official journal of the International Zeolite Association, vol.223, 121-128.

  27. Berenguer, R., Fornells, J., Garcia-Mateos, F.J., Guerrero-Perez, M.O., Rodriguez-Mirasol, J., Cordero, T.. Novel Synthesis Method of porous VPO catalysts with fibrous structure by Electrospinning. Catalysis today, vol.277, no.2, 266-273.

  28. 10.1080/00986445.2014.907564 

  29. Carreon, Moises A., Guliants, Vadim V.. Phase transformations in mesostructured vanadium–phosphorus-oxides. Catalysis today, vol.78, no.1, 303-310.

  30. Kamiya, Yuichi, Nishikawa, Eiichiro, Satsuma, Atsushi, Yoshimune, Miki, Okuhara, Toshio. Highly porous vanadium phosphorus oxides derived from vanadyl n-butylphosphate. Microporous and mesoporous materials : the official journal of the International Zeolite Association, vol.54, no.3, 277-283.

  31. Carreon, Moises A, Guliants, Vadim V. Mesostructured vanadium-phosphorus-oxide phases. Microporous and mesoporous materials : the official journal of the International Zeolite Association, vol.55, no.3, 297-304.

  32. Feng, Xinzhen, Yao, Yao, Su, Qin, Zhao, Liang, Jiang, Wu, Ji, Weijie, Au, Chak-Tong. Vanadium pyrophosphate oxides: The role of preparation chemistry in determining renewable acrolein production from glycerol dehydration. Applied catalysis. B, Environmental, vol.164, 31-39.

  33. Jiang, Q., Zhao, J., Li, X.K., Ji, W.J., Zhang, Z.B., Au, C.T.. Water modification of PEG-derived VPO for the partial oxidation of propane. Applied catalysis. A, General, vol.341, no.1, 70-76.

  34. Wang, Xiaoshu, Xu, Lijun, Chen, Xi, Ji, Weijie, Yan, Qijie, Chen, Yi. Novel modifications in preparing vanadium phosphorus oxides and their applications for partial oxidation of n-butane. Journal of molecular catalysis. A, Chemical, vol.206, no.1, 261-268.

  35. Imai, H., Kamiya, Y., Okuhara, T.. Selective oxidation of n-butane over nanosized crystallites of (VO)2P2O7 synthesized by an exfoliation–reduction process of VOPO4⋅2H2O in a mixture of 2-butanol and ethanol. Journal of catalysis, vol.251, no.1, 195-203.

  36. Carreon, M. A., Guliants, V. V.. Macroporous Vanadium Phosphorus Oxide Phases Displaying Three-Dimensional Arrays of Spherical Voids. Chemistry of materials : a publication of the American Chemical Society, vol.14, no.6, 2670-2675.

  37. Carreon, Moises A., Guliants, Vadim V.. Hierarchical design of mixed metal oxides: novel macroporous VPO phases. Chemical communications : Chem comm, vol.2001, no.16, 1438-1439.

  38. Wu, H.Y., Jin, P., Sun, Y.f., Yang, M.H., Huang, C.J., Weng, W.Z., Wan, H.L.. Enhancing catalytic performance of phosphorus-modified ceria supported VPO catalysts for n-butane oxidation. Journal of molecular catalysis. A, Chemical, vol.414, 1-8.

  39. Duarte de Farias, Andréa M., Gonzalez, Wilma de A., Pries de Oliveira, Paulo G., Eon, Jean-Guillaume, Herrmann, Jean-Marie, Aouine, Mimoun, Loridant, Stéphane, Volta, Jean-Claude. Vanadium Phosphorus Oxide Catalyst Modified by Niobium Doping for Mild Oxidation of n-Butane to Maleic Anhydride. Journal of catalysis, vol.208, no.1, 238-246.

  40. Lu, Wenjing, Ma, Jun, Hu, Jiayin, Song, Jinliang, Zhang, Zhaofu, Yang, Guanying, Han, Buxing. Efficient synthesis of quinazoline-2,4(1H,3H)-diones from CO2 using ionic liquids as a dual solvent–catalyst at atmospheric pressure. Green chemistry : an international journal and green chemistry resource : GC, vol.16, no.1, 221-225.

  41. Fan, Honglei, Yang, Yingying, Song, Jinliang, Ding, Guodong, Wu, Congyi, Yang, Guanying, Han, Buxing. One-pot sequential oxidation and aldol-condensation reactions of veratryl alcohol catalyzed by the Ru@ZIF-8 + CuO/basic ionic liquid system. Green chemistry : an international journal and green chemistry resource : GC, vol.16, no.2, 600-604.

  42. Kang, Xinchen, Sun, Xiaofu, Han, Buxing. Synthesis of Functional Nanomaterials in Ionic Liquids. Advanced materials, vol.28, no.6, 1011-1030.

  43. Kang, Xinchen, Sun, Xiaofu, Zhu, Qinggong, Ma, Xiaoxue, Liu, Huizhen, Ma, Jun, Qian, Qingli, Han, Buxing. Synthesis of hierarchical mesoporous Prussian blue analogues in ionic liquid/water/MgCl2 and application in electrochemical reduction of CO2. Green chemistry : an international journal and green chemistry resource : GC, vol.18, no.7, 1869-1873.

  44. Jiang, Jingyun, Yan, Chuanyu, Zhao, Xinhui, Luo, Hongxia, Xue, Zhimin, Mu, Tiancheng. A PEGylated deep eutectic solvent for controllable solvothermal synthesis of porous NiCo2S4 for efficient oxygen evolution reaction. Green chemistry : an international journal and green chemistry resource : GC, vol.19, no.13, 3023-3031.

  45. Wagle, Durgesh V., Zhao, Hua, Baker, Gary A.. Deep Eutectic Solvents: Sustainable Media for Nanoscale and Functional Materials. Accounts of chemical research, vol.47, no.8, 2299-2308.

  46. Welton, Tom. Ionic liquids in catalysis. Coordination chemistry reviews, vol.248, no.21, 2459-2477.

  47. Fukushima, Takanori, Aida, Takuzo. Ionic Liquids for Soft Functional Materials with Carbon Nanotubes. Chemistry : a European journal, vol.13, no.18, 5048-5058.

  48. Xie, Yujiao, Dong, Haifeng, Zhang, Suojiang, Lu, Xiaohua, Ji, Xiaoyan. Solubilities of CO2, CH4, H2, CO and N2 in choline chloride/urea. Green energy & environment, vol.1, no.3, 195-200.

  49. Li, F.t., Wang, X.j., Zhao, Y., Liu, J.x., Hao, Y.j., Liu, R.h., Zhao, D.s.. Ionic-liquid-assisted synthesis of high-visible-light-activated N-B-F-tri-doped mesoporous TiO2 via a microwave route. Applied catalysis. B, Environmental, vol.144, 442-453.

  50. He, Bin, Li, Zihang, Zhang, Huiling, Dai, Fei, Li, Kang, Liu, Ruixia, Zhang, Suojiang. Synthesis of Vanadium Phosphorus Oxide Catalysts Assisted by Deep-Eutectic Solvents for n-Butane Selective Oxidation. Industrial & engineering chemistry research, vol.58, no.8, 2857-2867.

  51. Patiño, Julián, Gutiérrez, María C., Carriazo, Daniel, Ania, Conchi O., Parra, José B., Ferrer, M. Luisa, Monte, Francisco del. Deep eutectic assisted synthesis of carbon adsorbents highly suitable for low-pressure separation of CO2–CH4 gas mixtures. Energy & environmental science, vol.5, no.9, 8699-8707.

  52. Gutiérrez, María C., Carriazo, Daniel, Ania, Conchi O., Parra, Jose B., Ferrer, M. Luisa, del Monte, Francisco. Deep eutectic solvents as both precursors and structure directing agents in the synthesis of nitrogen doped hierarchical carbons highly suitable for CO2 capture. Energy & environmental science, vol.4, no.9, 3535-3544.

  53. Taufiq-Yap, Y. H., Goh, C. K., Hutchings, G. J., Dummer, N., Bartley, J.. Dependence of n-Butane Activation on Active Site of Vanadium Phosphate Catalysts. Catalysis letters, vol.130, no.3, 327-334.

  54. Cavani, F., De Santi, D., Luciani, S., Lofberg, A., Bordes-Richard, E., Cortelli, C., Leanza, R.. Transient reactivity of vanadyl pyrophosphate, the catalyst for n-butane oxidation to maleic anhydride, in response to in-situ treatments. Applied catalysis. A, General, vol.376, no.1, 66-75.

  55. Lesser, D., Mestl, G., Turek, T.. Transient behavior of vanadyl pyrophosphate catalysts during the partial oxidation of n‑butane in industrial-sized, fixed bed reactors. Applied catalysis. A, General, vol.510, 1-10.

  56. Kamiya, Yuichi, Imai, Hiroyuki, Okuhara, Toshio. Selective Oxidation of n-Butane over Highly Crystalline Vanadyl Pyrophosphate Catalyst Synthesized by Intercalation-exfoliation-reduction of Layered Vanadyl Phosphate Dihydrate. Journal of the Japan Petroleum Institute, vol.52, no.3, 81-89.

  57. Taufiq-Yap, Y. H., Nurul Suziana, N. M., Hussein, M. Z.. Influences of the Various Metal Dopants for the Nanosized Vanadium Phosphate Catalysts. Catalysis letters, vol.141, no.1, 136-148.

  58. Haber, J., Zazhigalov, V.A., Stoch, J., Bogutskaya, L.V., Batcherikova, I.V.. Mechanochemistry: the activation method of VPO catalysts for n-butane partial oxidation. Catalysis today, vol.33, no.1, 39-47.

  59. Ben Abdelouahab, F., Olier, R., Guilhaume, N., Lefebvre, F., Volta, J.C.. A study by in situ laser Raman spectroscopy of VPO catalysts for n-butane oxidation to maleic anhydride I. Preparation and characterization of pure reference phases. Journal of catalysis, vol.134, no.1, 151-167.

  60. Zhu, S., Li, H., Zhu, W., Jiang, W., Wang, C., Wu, P., Zhang, Q., Li, H.. Vibrational analysis and formation mechanism of typical deep eutectic solvents: An experimental and theoretical study. Journal of molecular graphics & modelling, vol.68, 158-175.

  61. Carreon, M. A., Guliants, V. V.. Macroporous Vanadium Phosphorus Oxide Phases Displaying Three-Dimensional Arrays of Spherical Voids. Chemistry of materials : a publication of the American Chemical Society, vol.14, no.6, 2670-2675.

  62. Yang, Dan, Li, Dan, Yao, Haoyu, Zhang, Guoliang, Jiao, Tiantian, Li, Zengxi, Li, Chunshan, Zhang, Suojiang. Reaction of Formalin with Acetic Acid over Vanadium–Phosphorus Oxide Bifunctional Catalyst. Industrial & engineering chemistry research, vol.54, no.27, 6865-6873.

  63. Behera, G.C., Parida, K.M., Das, D.P.. Facile fabrication of aluminum-promoted vanadium phosphate: A highly active heterogeneous catalyst for isopropylation of toluene to cymene. Journal of catalysis, vol.289, 190-198.

  64. Rownaghi, Ali Asghar, Hin, Taufiq-Yap Yun, Jiunn, Tang W.. Influence of the Ethylene Glycol, Water Treatment and Microwave Irradiation on the Characteristics and Performance of VPO Catalysts for n-Butane Oxidation to Maleic Anhydride. Catalysis letters, vol.130, no.3, 593-603.

  65. Rownaghi, Ali Asghar, Taufiq-Yap, Yun Hin, Rezaei, Fateme. Influence of Rare-Earth and Bimetallic Promoters on Various VPO Catalysts for Partial Oxidation of n-Butane. Catalysis letters, vol.130, no.3, 504-516.

  66. TAUFIQ-YAP, Y.H., ABDUL GHANI, A.A.. Synthesis and Characterization of Ni-Doped Vanadium Phosphorus Oxide Catalysts. Chinese journal of catalysis, vol.28, no.12, 1037-1040.

  67. Cornaglia, L, Irusta, S, Lombardo, E.A, Durupty, M.C, Volta, J.C. The beneficial effect of cobalt on VPO catalysts. Catalysis today, vol.78, no.1, 291-301.

  68. Irusta, S., Boix, A., Pierini, B., Caspani, C., Petunchi, J.. Effect of Mo on the Active Sites of VPO Catalysts upon the Selective Oxidation of n-Butane. Journal of catalysis, vol.187, no.2, 298-310.

  69. Carrara, C, Irusta, S, Lombardo, E, Cornaglia, L. Study of the Co-VPO interaction in promoted n-butane oxidation catalysts. Applied catalysis. A, General, vol.217, no.1, 275-286.

  70. Mota, S., Volta, J.C., Vorbeck, G., Dalmon, J.A.. Selective Oxidation of n-Butane on a V–P–O Catalyst: Improvement of the Catalytic Performance under Fuel-Rich Conditions by Doping. Journal of catalysis, vol.193, no.2, 319-329.

  71. Coulston, G.W., Thompson, E.A., Herron, N.. Characterization of VPO Catalysts by X-Ray Photoelectron Spectroscopy. Journal of catalysis, vol.163, no.1, 122-129.

  72. Fu, Gang, Yuan, Ruming, Wang, Pei, Wan, Huilin. DFT studies on the activation of C-H bonds on V/P mixed oxides. Chinese journal of catalysis, vol.36, no.9, 1528-1534.

  73. Wang, Pei, Fu, Gang, Wan, Huilin. How High Valence Transition Metal Spreads Its Activity over Nonmetal Oxoes: A Proof-of-Concept Study. ACS catalysis, vol.7, no.8, 5544-5548.

  74. Centi, Gabriele, Trifiro, Ferruccio, Ebner, Jerry R., Franchetti, Victoria M.. Mechanistic aspects of maleic anhydride synthesis from C4 hydrocarbons over phosphorus vanadium oxide. Chemical reviews, vol.88, no.1, 55-80.

활용도 분석정보

상세보기
다운로드
내보내기

활용도 Top5 논문

해당 논문의 주제분야에서 활용도가 높은 상위 5개 콘텐츠를 보여줍니다.
더보기 버튼을 클릭하시면 더 많은 관련자료를 살펴볼 수 있습니다.

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