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One-nanometer-thick platinum-based nanowires with controllable surface structures 被引量:2
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作者 Xiaokun Fan Shuiping luo +6 位作者 Xixia Zhao Xiaotong Wu zhishan luo Min Tang Wen Chen Xing Song Zewei Quan 《Nano Research》 SCIE EI CAS CSCD 2019年第7期1721-1726,共6页
Pt-based ultrathin nanowires (NWs) are considered as one of the most intriguing catalysts for fuel cells.However,the delicate controllability of surface structure of ultrathin NWs to regulate their catalytic performan... Pt-based ultrathin nanowires (NWs) are considered as one of the most intriguing catalysts for fuel cells.However,the delicate controllability of surface structure of ultrathin NWs to regulate their catalytic performances is still a challenge.Here,two kinds of one-nanometer-thick Pt-based NWs with smooth surfaces (S-NWs) and rough surfaces (R-NWs) are demonstrated,in which the combined use of hexadecyltrimethylammonium bromide and oleylamine plays an essential role,as they could form soft-templates to direct the growth of NWs.Due to its high-density of low-coordinated sites on the surface,Pt-based R-NWs exhibit higher oxygen reduction reaction (ORR) activities but lower stabilities than corresponding S-NWs.Notably,Pt0.78Ni0.22 R-NWs possess the highest mass activity (1.07 A-mgpt^-1) and specific activity (1.02 mA·cm^-2) among all Pt-based NWs.After 10,000 sweeping cycles,the mass activity still exhibits 5.7-fold enhancement compared to the corresponding commercial Pt/C.This work presents a new approach to delicately control the surface structure of ultrathin Pt-based NWs as advanced ORR catalysts. 展开更多
关键词 PLATINUM ULTRATHIN NANOWIRE surface structure oxygen reduction reaction electrtocatalyst
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低维金属卤化物的结构与光学调控:化学合成与物理高压 被引量:1
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作者 申鹏飞 李茜 +3 位作者 罗志山 谭丽 韦祎 权泽卫 《科学通报》 EI CAS CSCD 北大核心 2021年第25期3261-3271,共11页
金属卤化物作为一类新型光电材料,在发光二极管、太阳能电池、光电探测器、激光器等领域具有重要的应用前景.其晶体结构丰富且易被调节,通过在分子尺度上的控制,可由三维(3D)逐渐扩展至二维(2D)、一维(1D)及零维(0D).与三维金属卤化物相... 金属卤化物作为一类新型光电材料,在发光二极管、太阳能电池、光电探测器、激光器等领域具有重要的应用前景.其晶体结构丰富且易被调节,通过在分子尺度上的控制,可由三维(3D)逐渐扩展至二维(2D)、一维(1D)及零维(0D).与三维金属卤化物相比,低维金属卤化物通常展现出更大的结构扭曲、更强的量子限域效应以及显著提升的激子结合能,使其成为在照明和显示领域备受关注的高效发光材料.现阶段,低维金属卤化物结构和光学性调控在依赖于传统化学手段的同时,也能够通过高压等物理手段完成.与传统化学调控手段不同,高压技术能够在不改变化学组分的前提下,对金属卤化物的结构和性能进行连续调制.本文首先介绍了传统化学手段对金属卤化物的结构和光学性质调控,随后讨论了高压技术在金属卤化物结构演变和光学性质优化方面的应用,重点阐述了其结构与光学性能之间的内在联系.本文为发光低维金属卤化物的合理设计与精准合成提供了重要的思路. 展开更多
关键词 低维金属卤化物 光学性质 结构调控 高压
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