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NTIS 바로가기MRS bulletin, v.45 no.1, 2020년, pp.26 - 31
Park, Jeong Young , Somorjai, Gabor A.
Understanding fundamental mechanisms for surface electronic excitation is of great importance in surface chemistry. Charge transport through metal-oxide interfaces plays a significant role in heterogeneous catalysis. Over the last several decades, a number of experimental and theoretical results sug...
Halas, Naomi J., Lal, Surbhi, Chang, Wei-Shun, Link, Stephan, Nordlander, Peter. Plasmons in Strongly Coupled Metallic Nanostructures. Chemical reviews, vol.111, no.6, 3913-3961.
Campos-Martin, Jose M., Blanco-Brieva, Gema, Fierro, Jose L. G.. Hydrogen Peroxide Synthesis: An Outlook beyond the Anthraquinone Process. Angewandte Chemie. international edition, vol.45, no.42, 6962-6984.
Lee, Seung Hee, Nedrygailov, Ievgen I., Oh, Sunyoung, Park, Jeong Young. Hot electron flux at solid–liquid interfaces probed with Pt/Si catalytic nanodiodes: Effects of pH during decomposition of hydrogen peroxide. Catalysis today, vol.303, 282-288.
Lee, Hyosun, Nedrygailov, Ievgen I., Lee, Young Keun, Lee, Changhwan, Choi, Hongkyw, Choi, Jin Sik, Choi, Choon-Gi, Park, Jeong Young. Graphene–Semiconductor Catalytic Nanodiodes for Quantitative Detection of Hot Electrons Induced by a Chemical Reaction. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.16, no.3, 1650-1656.
Lee, Hyosun, Nedrygailov, Ievgen I., Lee, Si Woo, Park, Jeong Young. Isotope Effect of Hot Electrons Generated on Pt Nanoparticle Surfaces Under H2 and D2 Oxidation. Topics in catalysis, vol.61, no.9, 915-922.
Lee, Si Woo, Park, Woonghyeon, Lee, Hyosun, Chan Song, Hee, Jung, Yousung, Park, Jeong Young. Intrinsic Relation between Hot Electron Flux and Catalytic Selectivity during Methanol Oxidation. ACS catalysis, vol.9, no.9, 8424-8432.
Lee, Hyosun, Lim, Juhyung, Lee, Changhwan, Back, Seoin, An, Kwangjin, Shin, Jae Won, Ryoo, Ryong, Jung, Yousung, Park, Jeong Young. Boosting hot electron flux and catalytic activity at metal–oxide interfaces of PtCo bimetallic nanoparticles. Nature communications, vol.9, no.1, 2235-.
Goddeti, Kalyan C., Lee, Changhwan, Lee, Young Keun, Park, Jeong Young. Three-dimensional hot electron photovoltaic device with vertically aligned TiO 2 nanotubes. Scientific reports, vol.8, 7330-.
GoddetiAuthors contributed equally to this work., Kalyan C., Lee, Hyosun, Jeon, Beomjoon, Park, Jeong Young. Enhancing hot electron collection with nanotube-based three-dimensional catalytic nanodiode under hydrogen oxidation. Chemical communications : Chem comm, vol.54, no.65, 8968-8971.
Ray, Nathan J., Hashemian, Mohammad A., Karpov, Eduard G.. A Stationary Reaction Current Effect in Mesoporous Pt/ZrO2 System Under H2/O2 Environment. ACS applied materials & interfaces, vol.7, no.50, 27749-27754.
Schierbaum, Klaus, El Achhab, Mhamed. Generation of an electromotive force by hydrogen‐to‐water oxidation with Pt‐coated oxidized titanium foils. Physica status solidi. PSS. A, Applications and materials science, vol.208, no.12, 2796-2802.
Lee, Hyosun, Nedrygailov, Ievgen I., Lee, Changhwan, Somorjai, Gabor A., Park, Jeong Young. Chemical‐Reaction‐Induced Hot Electron Flows on Platinum Colloid Nanoparticles under Hydrogen Oxidation: Impact of Nanoparticle Size. Angewandte Chemie. international edition, vol.54, no.8, 2340-2344.
Park, Jeong Y., Lee, Hyunjoo, Renzas, J. Russell, Zhang, Yawen, Somorjai, Gabor A.. Probing Hot Electron Flow Generated on Pt Nanoparticles with Au/TiO2 Schottky Diodes during Catalytic CO Oxidation. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.8, no.8, 2388-2392.
Nienhaus, H., Gergen, B., Weinberg, W.H., McFarland, E.W.. Detection of chemically induced hot charge carriers with ultrathin metal film Schottky contacts. Surface science, vol.514, no.1, 172-181.
Hervier, Antoine, Renzas, J. Russell, Park, Jeong Y., Somorjai, Gabor A.. Hydrogen Oxidation-Driven Hot Electron Flow Detected by Catalytic Nanodiodes. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.9, no.11, 3930-3933.
Ji, X., Zuppero, A., Gidwani, J. M., Somorjai, G. A.. The Catalytic Nanodiode: Gas Phase Catalytic Reaction Generated Electron Flow Using Nanoscale Platinum Titanium Oxide Schottky Diodes. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.5, no.4, 753-756.
Somorjai, Gabor A.. The catalytic nanodiode. Its role in catalytic reaction mechanisms in a historical perspective. Catalysis letters, vol.101, no.1, 1-3.
Park, J. Y., Renzas, J. R., Hsu, B. B., Somorjai, G. A.. Interfacial and Chemical Properties of Pt/TiO2, Pd/TiO2, and Pt/GaN Catalytic Nanodiodes Influencing Hot Electron Flow. The journal of physical chemistry. C, Nanomaterials and Interfaces, vol.111, no.42, 15331-15336.
Park, Jeong Young, Somorjai, Gabor A.. The Catalytic Nanodiode: Detecting Continous Electron Flow at Oxide–Metal Interfaces Generated by a Gas‐Phase Exothermic Reaction. Chemphyschem : a European journal of chemical physics and physical chemistry, vol.7, no.7, 1409-1413.
Park, Jeong Young, Somorjai, Gabor A.. Energy conversion from catalytic reaction to hot electron current with metal-semiconductor Schottky nanodiodes. Journal of vacuum science & technology. processing, measurement, and phenomena : an official journal of the American Vacuum Society. B, Microelectronics and nanometer structures, vol.24, no.4, 1967-.
Gergen, Brian, Nienhaus, Hermann, Weinberg, W. Henry, McFarland, Eric W.. Chemically Induced Electronic Excitations at Metal Surfaces. Science, vol.294, no.5551, 2521-2523.
Ogawa, S., Petek, H.. Two-photon photoemission spectroscopy at clean and oxidized Cu(110) and Cu(100) surfaces. Surface science, vol.363, no.1, 313-320.
Somorjai, Gabor A., Frei, Heinz, Park, Jeong Y.. Advancing the Frontiers in Nanocatalysis, Biointerfaces, and Renewable Energy Conversion by Innovations of Surface Techniques. Journal of the American Chemical Society, vol.131, no.46, 16589-16605.
Henry, Claude R.. Surface studies of supported model catalysts. Surface science reports, vol.31, no.7, 231-233,235-325.
Somorjai, Gabor A., Park, Jeong Y.. Molecular Factors of Catalytic Selectivity. Angewandte Chemie. international edition, vol.47, no.48, 9212-9228.
Hertel, T., Knoesel, E., Wolf, M., Ertl, G.. Ultrafast Electron Dynamics at Cu(111): Response of an Electron Gas to Optical Excitation. Physical review letters, vol.76, no.3, 535-538.
Hashemian, M. A., Palacios, E., Nedrygailov, I. I., Diesing, D., Karpov, E. G.. Thermal Properties of the Stationary Current in Mesoporous Pt/TiO2 Structures in an Oxyhydrogen Atmosphere. ACS applied materials & interfaces, vol.5, no.23, 12375-12379.
Schwab, Georg-Maria. Catalytic effects on the surface of semiconductors supported by metals. Surface science, vol.13, no.1, 198-200.
Lykhach, Yaroslava, Kozlov, Sergey M., Skála, Tomáš, Tovt, Andrii, Stetsovych, Vitalii, Tsud, Nataliya, Dvořák, Filip, Johánek, Viktor, Neitzel, Armin, Mysliveček, Josef, Fabris, Stefano, Matolín, Vladimír, Neyman, Konstantin M., Libuda, Jörg. Counting electrons on supported nanoparticles. Nature materials, vol.15, no.3, 284-288.
Knight, Mark W., Sobhani, Heidar, Nordlander, Peter, Halas, Naomi J.. Photodetection with Active Optical Antennas. Science, vol.332, no.6030, 702-704.
J. Am. Chem. Soc. 138 574 2015 10.1021/jacs.5b10669 Wilson
Boffa, A., Lin, C., Bell, A.T., Somorjai, G.A.. Promotion of CO and CO2 Hydrogenation over Rh by Metal Oxides: The Influence of Oxide Lewis Acidity and Reducibility. Journal of catalysis, vol.149, no.1, 149-158.
Tauster, S. J.. Strong metal-support interactions. Accounts of chemical research, vol.20, no.11, 389-394.
Nienhaus, Hermann. Electronic excitations by chemical reactions on metal surfaces. Surface science reports, vol.45, no.1, 1-78.
Gunasooriya, G. T. Kasun Kalhara, Seebauer, Edmund G., Saeys, Mark. Ethylene Hydrogenation over Pt/TiO2: A Charge-Sensitive Reaction. ACS catalysis, vol.7, no.3, 1966-1970.
Nienhaus, H., Bergh, H.S., Gergen, B., Majumdar, A., Weinberg, W.H., McFarland, E.W.. Direct detection of electron–hole pairs generated by chemical reactions on metal surfaces. Surface science, vol.445, no.2, 335-342.
Nedrygailov, I.I., Park, J.Y.. The nature of hot electrons generated by exothermic catalytic reactions. Chemical physics letters, vol.645, 5-14.
Nedrygailov, Ievgen I., Lee, Changhwan, Moon, Song Yi, Lee, Hyosun, Park, Jeong Young. Hot Electrons at Solid–Liquid Interfaces: A Large Chemoelectric Effect during the Catalytic Decomposition of Hydrogen Peroxide. Angewandte Chemie. international edition, vol.55, no.36, 10859-10862.
Jeon, Beomjoon, Lee, Hyosun, Goddeti, Kalyan C., Park, Jeong Young. Hot Electron Transport on Three-Dimensional Pt/Mesoporous TiO2 Schottky Nanodiodes. ACS applied materials & interfaces, vol.11, no.16, 15152-15159.
Park, Yujin, Choi, Jungkweon, Lee, Changhwan, Cho, An-Na, Cho, Dae Won, Park, Nam-Gyu, Ihee, Hyotcherl, Park, Jeong Young. Elongated Lifetime and Enhanced Flux of Hot Electrons on a Perovskite Plasmonic Nanodiode. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.19, no.8, 5489-5495.
Park, Jeong Young, Baker, L. Robert, Somorjai, Gabor A.. Role of Hot Electrons and Metal-Oxide Interfaces in Surface Chemistry and Catalytic Reactions. Chemical reviews, vol.115, no.8, 2781-2817.
Nedrygailov, Ievgen I., Lee, Changhwan, Moon, Song Yi, Lee, Hyosun, Park, Jeong Young. Liquid-phase catalytic reactor combined with measurement of hot electron flux and chemiluminescence. Review of scientific instruments, vol.87, no.11, 114101-.
Renzas, James Russell, Somorjai, Gabor A.. Rh Thin-Film Nanocatalysts as Chemical Sensors ? The Hot Electron Effect. The journal of physical chemistry. C, Nanomaterials and Interfaces, vol.114, no.41, 17660-17664.
Linic, Suljo, Christopher, Phillip, Ingram, David B.. Plasmonic-metal nanostructures for efficient conversion of solar to chemical energy. Nature materials, vol.10, no.12, 911-921.
Nedrygailov, Ievgen I., Lee, Changhwan, Moon, Song Yi, Lee, Hyosun, Park, Jeong Young. Hot Electrons at Solid–Liquid Interfaces: A Large Chemoelectric Effect during the Catalytic Decomposition of Hydrogen Peroxide. Angewandte Chemie, vol.128, no.36, 11017-11020.
Lee, Hyosun, Yoon, Sinmyung, Jo, Jinwoung, Jeon, Beomjoon, Hyeon, Taeghwan, An, Kwangjin, Park, Jeong Young. Enhanced hot electron generation by inverse metal-oxide interfaces on catalytic nanodiode. Faraday discussions, vol.214, 353-364.
Karpov, Eduard G., Hashemian, Mohammad A., Dasari, Suhas K.. Chemistry-Driven Signal Transduction in a Mesoporous Pt/TiO2 System. The journal of physical chemistry. C, Nanomaterials and Interfaces, vol.117, no.30, 15632-15638.
Lee, Young Keun, Lee, Hyosun, Lee, Changhwan, Hwang, Euyheon, Park, Jeong Young. Hot-electron-based solar energy conversion with metal–semiconductor nanodiodes. Journal of physics, an Institute of Physics journal. Condensed matter, vol.28, no.25, 254006-.
Lee, Young Keun, Jung, Chan Ho, Park, Jonghyurk, Seo, Hyungtak, Somorjai, Gabor A., Park, Jeong Young. Surface Plasmon-Driven Hot Electron Flow Probed with Metal-Semiconductor Nanodiodes. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.11, no.10, 4251-4255.
Moon, Song Yi, Song, Hee Chan, Gwag, Eun Heui, Nedrygailov, Ievgen I., Lee, Changhwan, Kim, Jeong Jin, Doh, Won Hui, Park, Jeong Young. Plasmonic hot carrier-driven oxygen evolution reaction on Au nanoparticles/TiO2 nanotube arrays. Nanoscale, vol.10, no.47, 22180-22188.
Zaera, Francisco. Probing Liquid/Solid Interfaces at the Molecular Level. Chemical reviews, vol.112, no.5, 2920-2986.
Cakabay, Ömer, Achhab, Mhamed El, Schierbaum, Klaus. Thermal properties of solid-state Pt/TiO2/Ti emf cells studied by microcalorimetry. Applied physics. A, Materials science & processing, vol.118, no.3, 1127-1132.
Schwab, G. M., Koller, K.. Combined action of metal and semiconductor catalysts. Journal of the American Chemical Society, vol.90, no.12, 3078-3080.
Willinger, Marc G., Zhang, Wei, Bondarchuk, Oleksandr, Shaikhutdinov, Shamil, Freund, Hans‐Joachim, Schlögl, Robert. A Case of Strong Metal–Support Interactions: Combining Advanced Microscopy and Model Systems to Elucidate the Atomic Structure of Interfaces. Angewandte Chemie. international edition, vol.53, no.23, 5998-6001.
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