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纳米晶体表面结构控制:过饱和度法调控原理与应用 被引量:3
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作者 张嘉伟 陈巧丽 +3 位作者 曹振明 匡勤 林海昕 谢兆雄 《中国科学:化学》 CAS CSCD 北大核心 2017年第5期507-516,共10页
纳米晶体很多重要的物理化学性质与其表面结构密切相关,纳米晶的表面结构调控及相关理论研究是前沿和热点领域.本评述总结了非平衡态过饱和条件下纳米晶体生长热力学相关理论及其在离子晶体、分子晶体、贵金属、氧化物、金属有机框架等... 纳米晶体很多重要的物理化学性质与其表面结构密切相关,纳米晶的表面结构调控及相关理论研究是前沿和热点领域.本评述总结了非平衡态过饱和条件下纳米晶体生长热力学相关理论及其在离子晶体、分子晶体、贵金属、氧化物、金属有机框架等5类纳米晶体表面结构控制中的应用.从热力学推导出的"类"Thomson-Gibbs方程可以发现,晶体裸露晶面的表面能与其生长过程生长基元的过饱和度成正比.该理论揭示了过饱和度在纳米晶体表面结构控制中的重要作用,为合理设计合成具有特定表面结构的纳米晶提供了有效指导. 展开更多
关键词 过饱和度 表面结构 高表面能晶面 纳米晶
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Solvent-dependent evolution of cyclic penta-twinned rhodium icosahedral nanocrystals and their enhanced catalytic properties
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作者 Yanan Yang Jiawei Zhang +7 位作者 Yajing Wei qiaoli chen Zhenming Cao Huiqi Li Jiayu chen Jueli Shi Zhaoxiong Xie Lansun Zheng 《Nano Research》 SCIE EI CAS CSCD 2018年第2期656-664,共9页
Cyclic penta-twinned noble metal nanocrystals exhibit promising properties due to their unique geometric and electronic structures. However, the controlled synthesis of cyclic penta-twinned nanostructures, especially ... Cyclic penta-twinned noble metal nanocrystals exhibit promising properties due to their unique geometric and electronic structures. However, the controlled synthesis of cyclic penta-twinned nanostructures, especially of noble metals with a high cohesive energy (e.g., Rh), is very difficult, and the corresponding growth mechanism is not fully understood. Herein, we report a facile one-pot hydrothermal approach for the synthesis of cyclic penta-twinned Rh icosahedral nanocrystals. It was found that apart from regulating the surface free energy by changing the concentration or category of the capping agents, the solvent might influence the adsorption ability of the surfactant on the Rh crystal surface, which results in a change in the surface free energy and thus allows the formation of Rh cyclic penta-twinned nanostructures. In addition, due to their unique electronic and geometric structures, the Rh icosahedral nanocrystals exhibit superior catalytic activity and stability for the electrooxidation of ethanol as compared to single-crystal Rh tetrahedral nanocrystals and commercial Rh black. 展开更多
关键词 Rhrcrystal growth ICOSAHEDRON TETRAHEDRON ELECTROCATALYSIS
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