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作者:Brainard, Jeffrey
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作者:Brainard, Jeffrey
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作者:Morgan-Taylor, Martin
作者单位:De Montfort University
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作者:Muravev, Valery; Parastaev, Alexander; van den Bosch, Yannis; Ligt, Bianca; Claes, Nathalie; Bals, Sara; Kosinov, Nikolay; Hensen, Emiel J. M.
作者单位:Eindhoven University of Technology; University of Antwerp
摘要:The catalytic performance of heterogeneous catalysts can be tuned by modulation of the size and structure of supported transition metals, which are typically regarded as the active sites. In single-atom metal catalysts, the support itself can strongly affect the catalytic properties. Here, we demonstrate that the size of cerium dioxide (CeO2) support governs the reactivity of atomically dispersed palladium (Pd) in carbon monoxide (CO) oxidation. Catalysts with small CeO2 nanocrystals (similar ...
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作者:Vasile, Flora; Rouach, Nathalie
作者单位:Universite PSL; College de France; Institut National de la Sante et de la Recherche Medicale (Inserm); Centre National de la Recherche Scientifique (CNRS); Fundacao Champalimaud
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作者:Karim, Quarraisha Abdool
作者单位:Columbia University
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作者:Brainard, Jeffrey
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作者:Sardar, Debosmita; Cheng, Yi-Ting; Woo, Junsung; Choi, Dong-Joo; Lee, Zhung-Fu; Kwon, Wookbong; Chen, Hsiao-Chi; Lozzi, Brittney; Cervantes, Alexis; Rajendran, Kavitha; Huang, Teng-Wei; Jain, Antrix; Arenkiel, Benjamin R.; Maze, Ian; Deneen, Benjamin
作者单位:Baylor College of Medicine; Baylor College Medical Hospital; Baylor College of Medicine; Baylor College of Medicine; Baylor College of Medicine; Baylor College of Medicine; Baylor College of Medicine; Baylor College of Medicine; Baylor College of Medicine; Baylor College of Medicine; Baylor College Medical Hospital; Icahn School of Medicine at Mount Sinai; Icahn School of Medicine at Mount Sinai; Icahn School of Medicine at Mount Sinai; Howard Hughes Medical Institute; Baylor College of Medicine
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作者:Brainard, Jeffrey
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作者:Cui, Yi; Liu, Lu; Lin, Huihang; Wu, Kai-Hsin; Hong, Wenshan; Liu, Xuefei; Li, Cong; Hu, Ze; Xi, Ning; Li, Shiliang; Yu, Rong; Sandvik, Anders W.; Yu, Weiqiang
作者单位:Renmin University of China; Chinese Academy of Sciences; Beijing Institute of Technology; Boston University; Chinese Academy of Sciences; University of Chinese Academy of Sciences, CAS; Songshan Lake Materials Laboratory; Renmin University of China
摘要:The deconfined quantum critical point (DQCP) represents a paradigm shift in quantum matter studies, presenting a beyond Landau scenario for order-order transitions. Its experimental realization, however, has remained elusive. Using high-pressure 11B nuclear magnetic resonance measurements on the quantum magnet SrCu2(BO3)2, we here demonstrate a magnetic field- induced plaquette singlet to antiferromagnetic transition above 1.8 gigapascals at a notably low temperature, Tc similar or equal to 0....