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[해외논문] Catalytic Synergy on PtNi Bimetal Catalysts Driven by Interfacial Intermediate Structures

ACS catalysis, v.10, 2020년, pp.10459 - 10467  

Kim, Taek-Seung (Department of Chemistry , Korea Advanced Institute of Science and Technology (KAIST) , Daejeon 34141 , Republic of Korea) ,  Kim, Jeongjin (Center for Nanomaterials and Chemical Reactions , Institute for Basic Science (IBS) , Daejeon 34141 , Republic of Korea) ,  Song, Hee Chan (Department of Chemistry , Korea Advanced Institute of Science and Technology (KAIST) , Daejeon 34141 , Republic of Korea) ,  Kim, Daeho (Department of Chemistry , Korea Advanced Institute of Science and Technology (KAIST) , Daejeon 34141 , Republic of Korea) ,  Jeong, Beomgyun (Research Center for Materials Analysis , Korea Basic Science Institute (KBSI) , Daejeon 34133 , Republic of Korea) ,  Lee, Jouhahn (Research Center for Materials Analysis , Korea Basic Science Institute (KBSI) , Daejeon 34133 , Republic of Korea) ,  Shin, Jae Won (Center for Nanomaterials and Chemical Reactions ,) ,  Ryoo, Ryong ,  Park, Jeong Young

Abstract AI-Helper 아이콘AI-Helper

Platinum-based bimetallic catalysts exhibit surface atomic rearrangement in various adsorbate environments, which significantly impacts catalysis. A molecular-level understanding of intermediate structures created during catalysis is essential for developing high-performance bimetal catalysts. We sh...

Keyword

참고문헌 (41)

  1. Cui, Chunhua, Gan, Lin, Li, Hui-Hui, Yu, Shu-Hong, Heggen, Marc, Strasser, Peter. Octahedral PtNi Nanoparticle Catalysts: Exceptional Oxygen Reduction Activity by Tuning the Alloy Particle Surface Composition. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.12, no.11, 5885-5889.

  2. Ko, Eun-Yong, Park, Eun Duck, Lee, Hyun Chul, Lee, Doohwan, Kim, Soonho. Supported Pt–Co Catalysts for Selective CO Oxidation in a Hydrogen-Rich Stream. Angewandte Chemie. international edition, vol.46, no.5, 734-737.

  3. Du, Xin Xin, He, Yang, Wang, Xiao Xia, Wang, Jian Nong. Fine-grained and fully ordered intermetallic PtFe catalysts with largely enhanced catalytic activity and durability. Energy & environmental science, vol.9, no.8, 2623-2632.

  4. Zhang, Zhicheng, Luo, Zhimin, Chen, Bo, Wei, Chao, Zhao, Jian, Chen, Junze, Zhang, Xiao, Lai, Zhuangchai, Fan, Zhanxi, Tan, Chaoliang, Zhao, Meiting, Lu, Qipeng, Li, Bing, Zong, Yun, Yan, Chengcheng, Wang, Guoxiong, Xu, Zhichuan J., Zhang, Hua. One‐Pot Synthesis of Highly Anisotropic Five‐Fold‐Twinned PtCu Nanoframes Used as a Bifunctional Electrocatalyst for Oxygen Reduction and Methanol Oxidation. Advanced materials, vol.28, no.39, 8712-8717.

  5. Mavrikakis, M., Hammer, B., Nørskov, J. K.. Effect of Strain on the Reactivity of Metal Surfaces. Physical review letters, vol.81, no.13, 2819-2822.

  6. Stamenkovic, Vojislav, Mun, Bongjin Simon, Mayrhofer, Karl J. J., Ross, Philip N., Markovic, Nenad M., Rossmeisl, Jan, Greeley, Jeff, Nørskov, Jens K.. Changing the Activity of Electrocatalysts for Oxygen Reduction by Tuning the Surface Electronic Structure. Angewandte Chemie. international edition, vol.45, no.18, 2897-2901.

  7. 10.1016/S0360-0564(02)45013-4 

  8. Wu, Cheng Hao, Liu, Chang, Su, Dong, Xin, Huolin L., Fang, Hai-Tao, Eren, Baran, Zhang, Sen, Murray, Christopher B., Salmeron, Miquel B.. Bimetallic synergy in cobalt-palladium nanocatalysts for CO oxidation. Nature catalysis, vol.2, no.1, 78-85.

  9. Yin, Jun, Shan, Shiyao, Yang, Lefu, Mott, Derrick, Malis, Oana, Petkov, Valeri, Cai, Fan, Shan Ng, Mei, Luo, Jin, Chen, Bing H., Engelhard, Mark, Zhong, Chuan-Jian. Gold–Copper Nanoparticles: Nanostructural Evolution and Bifunctional Catalytic Sites. Chemistry of materials : a publication of the American Chemical Society, vol.24, no.24, 4662-4674.

  10. Friedrich, Matthias, Penner, Simon, Heggen, Marc, Armbrüster, Marc. High CO2 Selectivity in Methanol Steam Reforming through ZnPd/ZnO Teamwork. Angewandte Chemie. international edition, vol.52, no.16, 4389-4392.

  11. Snider, Jonathan L., Streibel, Verena, Hubert, McKenzie A., Choksi, Tej S., Valle, Eduardo, Upham, D. Chester, Schumann, Julia, Duyar, Melis S., Gallo, Alessandro, Abild-Pedersen, Frank, Jaramillo, Thomas F.. Revealing the Synergy between Oxide and Alloy Phases on the Performance of Bimetallic In-Pd Catalysts for CO2 Hydrogenation to Methanol. ACS catalysis, vol.9, no.4, 3399-3412.

  12. Bauer, J. Chris, Veith, Gabriel M., Allard, Lawrence F., Oyola, Yatsandra, Overbury, Steve H., Dai, Sheng. Silica-Supported Au–CuOx Hybrid Nanocrystals as Active and Selective Catalysts for the Formation of Acetaldehyde from the Oxidation of Ethanol. ACS catalysis, vol.2, no.12, 2537-2546.

  13. 10.1016/S0360-0564(08)60052-8 

  14. Tauster, S. J., Fung, S. C., Garten, R. L.. Strong metal-support interactions. Group 8 noble metals supported on titanium dioxide. Journal of the American Chemical Society, vol.100, no.1, 170-175.

  15. Tang, Hailian, Su, Yang, Zhang, Bingsen, Lee, Adam F., Isaacs, Mark A., Wilson, Karen, Li, Lin, Ren, Yuegong, Huang, Jiahui, Haruta, Masatake, Qiao, Botao, Liu, Xin, Jin, Changzi, Su, Dangsheng, Wang, Junhu, Zhang, Tao. Classical strong metal–support interactions between gold nanoparticles and titanium dioxide. Science advances, vol.3, no.10, e1700231-.

  16. Baker, L. Robert, Kennedy, Griffin, Van Spronsen, Matthijs, Hervier, Antoine, Cai, Xiaojun, Chen, Shiyou, Wang, Lin-Wang, Somorjai, Gabor A.. Furfuraldehyde Hydrogenation on Titanium Oxide-Supported Platinum Nanoparticles Studied by Sum Frequency Generation Vibrational Spectroscopy: Acid–Base Catalysis Explains the Molecular Origin of Strong Metal–Support Interactions. Journal of the American Chemical Society, vol.134, no.34, 14208-14216.

  17. Su, H.Y., Gu, X.K., Ma, X., Zhao, Y.H., Bao, X.H., Li, W.X.. Structure evolution of Pt-3d transition metal alloys under reductive and oxidizing conditions and effect on the CO oxidation: a first-principles study. Catalysis today, vol.165, no.1, 89-95.

  18. Menning, C. A., Hwu, H. H., Chen, J. G.. Experimental and Theoretical Investigation of the Stability of Pt−3d−Pt(111) Bimetallic Surfaces under Oxygen Environment. The journal of physical chemistry. B, Condensed matter, materials, surfaces, interfaces & biophysical, vol.110, no.31, 15471-15477.

  19. Lee, H.C., Kim, B.M., Jeong, C.K., Toyoshima, R., Kondoh, H., Shimada, T., Mase, K., Mao, B., Liu, Z., Lee, H., Huang, C.Q., Li, W.X., Ross, P.N., Mun, B.S.. Surface segregation and oxidation of Pt3Ni(111) alloys under oxygen environment. Catalysis today, vol.260, 3-7.

  20. Xin, Huolin L., Alayoglu, Selim, Tao, Runzhe, Genc, Arda, Wang, Chong-Min, Kovarik, Libor, Stach, Eric A., Wang, Lin-Wang, Salmeron, Miquel, Somorjai, Gabor A., Zheng, Haimei. Revealing the Atomic Restructuring of Pt–Co Nanoparticles. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.14, no.6, 3203-3207.

  21. 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.

  22. Somorjai, Gabor A., Park, Jeong Y.. Concepts, instruments, and model systems that enabled the rapid evolution of surface science. Surface science, vol.603, no.10, 1293-1300.

  23. Eren, Baran, Torres, Daniel, Karslıoğlu, Osman, Liu, Zongyuan, Wu, Cheng Hao, Stacchiola, Dario, Bluhm, Hendrik, Somorjai, Gabor A., Salmeron, Miquel. Structure of Copper-Cobalt Surface Alloys in Equilibrium with Carbon Monoxide Gas. Journal of the American Chemical Society, vol.140, no.21, 6575-6581.

  24. Wu, Cheng Hao, Eren, Baran, Bluhm, Hendrik, Salmeron, Miquel B.. Ambient-Pressure X-ray Photoelectron Spectroscopy Study of Cobalt Foil Model Catalyst under CO, H2, and Their Mixtures. ACS catalysis, vol.7, no.2, 1150-1157.

  25. Chi, Miaofang, Wang, Chao, Lei, Yinkai, Wang, Guofeng, Li, Dongguo, More, Karren L., Lupini, Andrew, Allard, Lawrence F., Markovic, Nenad M., Stamenkovic, Vojislav R.. Surface faceting and elemental diffusion behaviour at atomic scale for alloy nanoparticles during in situ annealing. Nature communications, vol.6, 8925-.

  26. Zou, Lianfeng, Yang, Chaoming, Lei, Yinkai, Zakharov, Dmitri, Wiezorek, Jörg M. K., Su, Dong, Yin, Qiyue, Li, Jonathan, Liu, Zhenyu, Stach, Eric A., Yang, Judith C., Qi, Liang, Wang, Guofeng, Zhou, Guangwen. Dislocation nucleation facilitated by atomic segregation. Nature materials, vol.17, no.1, 56-63.

  27. 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-.

  28. Kim, Jeongjin, Park, Woong Hyeon, Doh, Won Hui, Lee, Si Woo, Noh, Myung Cheol, Gallet, Jean-Jacques, Bournel, Fabrice, Kondoh, Hiroshi, Mase, Kazuhiko, Jung, Yousung, Mun, Bongjin Simon, Park, Jeong Young. Adsorbate-driven reactive interfacial Pt-NiO 1−x nanostructure formation on the Pt 3 Ni(111) alloy surface. Science advances, vol.4, no.7, eaat3151-.

  29. Kim, Jeongjin, Doh, Won Hui, Kondoh, Hiroshi, Mase, Kazuhiko, Gallet, Jean-Jacques, Bournel, Fabrice, Mun, Bongjin Simon, Park, Jeong Young. Operando observations of reactive metal–Oxide structure formation on the Pt3Ni(111) surface at near-ambient pressure. Journal of electron spectroscopy and related phenomena, vol.238, 146857-.

  30. Lackner, Peter, Hulva, Jan, Köck, Eva-Maria, Mayr-Schmölzer, Wernfried, Choi, Joong Il J., Penner, Simon, Diebold, Ulrike, Mittendorfer, Florian, Redinger, Josef, Klötzer, Bernhard, Parkinson, Gareth S., Schmid, Michael. Water adsorption at zirconia: from the ZrO2(111)/Pt3Zr(0001) model system to powder samples. Journal of materials chemistry. A, Materials for energy and sustainability, vol.6, no.36, 17587-17601.

  31. Zheng, Fan, Alayoglu, Selim, Guo, Jinghua, Pushkarev, Vladimir, Li, Yimin, Glans, Per-Anders, Chen, Jeng-lung, Somorjai, Gabor. In-situ X-ray Absorption Study of Evolution of Oxidation States and Structure of Cobalt in Co and CoPt Bimetallic Nanoparticles (4 nm) under Reducing (H2) and Oxidizing (O2) Environments. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.11, no.2, 847-853.

  32. Jeong, C., Yun, H., Lee, H., Muller, S., Lee, J., Mun, B.S.. Performance test of new near-ambient-pressure XPS at Korean Basic Science Institute and its application to CO oxidation study on Pt3Ti polycrystalline surface. Current applied physics : the official journal of the Korean Physical Society, vol.16, no.1, 73-78.

  33. Oh, Sunyoung, Qadir, Kamran, Park, Jeong Young. Nature of Active Sites and Their Quantitative Measurement in Two-Dimensional Pt Metal Catalysts. Catalysis letters, vol.147, no.1, 39-45.

  34. Bonakdarpour, A., Wenzel, J., Stevens, D. A., Sheng, S., Monchesky, T. L., Löbel, R., Atanasoski, R. T., Schmoeckel, A. K., Vernstrom, G. D., Debe, M. K., Dahn, J. R.. Studies of Transition Metal Dissolution from Combinatorially Sputtered, Nanostructured Pt[sub 1−x]M[sub x] (M = Fe, Ni; 0<x<1) Electrocatalysts for PEM Fuel Cells. Journal of the Electrochemical Society : JES, vol.152, no.1, A61-.

  35. Kuhlenbeck, H., Odörfer, G., Jaeger, R., Illing, G., Menges, M., Mull, Th., Freund, H.-J., Pöhlchen, M., Staemmler, V., Witzel, S., Scharfschwerdt, C., Wennemann, K., Liedtke, T., Neumann, M.. Molecular adsorption on oxide surfaces: Electronic structure and orientation of NO on NiO(100)/Ni(100) and on NiO(100) as determined from electron spectroscopies andab initiocluster calculations. Physical review. B, Condensed matter, vol.43, no.3, 1969-1986.

  36. Kim, K.S., Winograd, Nicholas. X-ray photoelectron spectroscopic studies of nickel-oxygen surfaces using oxygen and argon ion-bombardment. Surface science, vol.43, no.2, 625-643.

  37. Luo, Langli, Nian, Yao, Wang, Shuangbao, Dong, Zejian, He, Yang, Han, You, Wang, Chongmin. Real‐Time Atomic‐Scale Visualization of Reversible Copper Surface Activation during the CO Oxidation Reaction. Angewandte Chemie, vol.132, no.6, 2526-2530.

  38. Zhou, Guangwen, Luo, Langli, Li, Liang, Ciston, Jim, Stach, Eric A., Yang, Judith C.. Step-Edge-Induced Oxide Growth During the Oxidation of Cu Surfaces. Physical review letters, vol.109, no.23, 235502-.

  39. Wang, J. G., Li, W. X., Borg, M., Gustafson, J., Mikkelsen, A., Pedersen, T. M., Lundgren, E., Weissenrieder, J., Klikovits, J., Schmid, M., Hammer, B., Andersen, J. N.. One-Dimensional $ \mathrm{PtO}_{2}$ at Pt Steps: Formation and Reaction with CO. Physical review letters, vol.95, no.25, 256102-.

  40. Ackermann, M. D., Pedersen, T. M., Hendriksen, B. L. M., Robach, O., Bobaru, S. C., Popa, I., Quiros, C., Kim, H., Hammer, B., Ferrer, S., Frenken, J. W. M.. Structure and Reactivity of Surface Oxides on Pt(110) during Catalytic CO Oxidation. Physical review letters, vol.95, no.25, 255505-.

  41. Oh, Sunyoung, Back, Seoin, Doh, Won Hui, Moon, Song Yi, Kim, Jeongjin, Jung, Yousung, Park, Jeong Young. Probing surface oxide formations on SiO2-supported platinum nanocatalysts under CO oxidation. RSC advances, vol.7, no.71, 45003-45009.

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