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Angew. Chem. Int. Ed.最新综述:基于电化学的纳米粒子
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Electrochemistry of Nanoparticles 共28页 引文357篇 Steven E. F. Kleijn, Stanley C. S. Lai, Marc T. M. Koper,* and Patrick R. Unwin* Leiden Institute of Chemistry, Leiden University PO Box 9502, 2300 RA, Leiden (The Netherlands) E-mail: m.koper@chem.leidenuniv.nl Dr. S. C. S. Lai, Prof. Dr. P. R. Unwin Department of Chemistry, University of Warwick Gibbet Hill Road, Coventry CV4 7AL (UK) E-mail: p.r.unwin@warwick.ac.uk Dr. S. C. S. Lai Current address: MESA+ Institute for Nanotechnology, University of Twente, PO Box 217, 7500 AE, Enschede (The Netherlands) M etal nanoparticles (NPs) find widespread application as a result of their unique physical and chemical properties. NPs have generated considerable interest in catalysis and electrocatalysis, where they provide a high surface area to mass ratio and can be tailored to promote particular reaction pathways. The activity of NPs can be analyzed especially well using electrochemistry, which probes inter- facial chemistry directly. In this Review, we discuss key issues related to the electrochemistry of NPs. We highlight model studies that demon- strate exceptional control over the NP shape and size, or mass-trans- port conditions, which can provide key insights into the behavior of ensembles of NPs. Particular focus is on the challenge of ultimately measuring reactions at individual NPs, and relating the response to their structure, which is leading to imaginative experiments that have an impact on electrochemistry in general as well as broader surface and colloid science. |
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2014-04-11 17:03:05, 3.49 M
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文献推荐 | 电化学电源、电源管理 | 科技相关 | reviews paper |
影视方面 | 淘贴集 | 实验分析方法 | 纳米材料及应用 |
纳米 | 电化学 | 电化学催化 | 分享即是快乐 |
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