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X-ray absorption spectroscopy for single-atom catalysts: Critical importance and persistent challenges 被引量:4
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作者 isao ogino 《Chinese Journal of Catalysis》 CSCD 北大核心 2017年第9期1481-1488,共8页
X射线吸收光谱(XAS)可为负载型单中心(单原子或单核金属络合物)催化剂的结构和电子特性提供重要信息.虽然XAS技术可表征真实反应条件下、无需长程有序结构的催化剂,并且可提供对于负载型单中心催化剂非常重要的金属-载体界面信息;但是... X射线吸收光谱(XAS)可为负载型单中心(单原子或单核金属络合物)催化剂的结构和电子特性提供重要信息.虽然XAS技术可表征真实反应条件下、无需长程有序结构的催化剂,并且可提供对于负载型单中心催化剂非常重要的金属-载体界面信息;但是它给出的信息是包括与催化有关或无关的所有负载型金属物种的平均信息.负载型催化剂的准确表征具有长期挑战性,也限制了我们准确地理解催化剂的构效关系.为了更好地利用XAS表征技术,深入研究催化剂的构效关系,并最终用其指导设计开发出高效的催化剂,制备具有均一结构活性位的负载型单中心催化剂,并采用XAS及相关技术对其表征至关重要.本文列举了一些实例以说明XAS在表征具有均一结构活性位的负载型单中心催化剂方面的能力,以及XAS如何与其他技术(如扫描透射电子显微镜和红外光谱)互补,为以分子筛和金属-有机骨架材料为载体而制得的具有均一结构活性位的负载型单中心催化剂提供原子尺度的信息. 展开更多
关键词 负载型催化剂 X射线吸收光谱 分子筛 金属-有机骨架材料 加氢 二聚 红外光谱 扫描透射电子显微镜
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The critical role of bulk density of graphene oxide in tuning its defect concentration through microwave-driven annealing
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作者 isao ogino Go Fukazawa +2 位作者 Shunsuke Kamatari Shinichiroh Iwamura Shin R. Mukai 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2018年第5期1468-1474,共7页
Controlling the concentration of defects in reduced graphene oxide (rGO) to tailor its electrical and physicochemical properties has remained a significant challenge. We report that extent of microwave (MW)-driven... Controlling the concentration of defects in reduced graphene oxide (rGO) to tailor its electrical and physicochemical properties has remained a significant challenge. We report that extent of microwave (MW)-driven annealing of rGO is influenced significantly by its bulk density, which allows us to vary its defect density and crystallite size over wide ranges by controlling this parameter. Extent of anneal- ing was investigated by multiple techniques including Raman and X-ray photoelectron spectroscopies, and electrical conductivity measurements. Improved corrosion resistance of rGOs upon annealing was ex- amined by cyclic voltammetry in H_2SO_4 electrolyte and temperature-programmed oxidation of rGO. Our results indicate that a low bulk density of rGO facilitates defect annealing, yielding high-quality carbon with 99.3 wt% purity, oxidative resistance as high as graphite powder, and an electrical conductivity of 36,000 S m-1 in the compressed powder form. These results demonstrate a prospective synthesis route for tailor-made nanocarbons from rGO through MW-driven annealing. 展开更多
关键词 Carbon NANOCARBON 2D material Catalyst ELECTRODE Energy storage material
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