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3篇 您的检索式:作者名="C.Buddie"
    题名 作者 年代 出处 被引量
1扫描电化学显微镜在光电能源研究领域的应用显示文摘作为一种扫描探针技术,扫描电化学显微镜(SECM)在金属防腐、材料表征、生物医学和新能源技术等领域的研究中扮演着重要角色。本文简要介绍了SECM的基本工作原理和常用的两种工作模式:反馈模式和收集/产生模式;综述了SECM在太阳能电池和太阳光解水制氢两个光电能源研究领域的应用进展,同时结合课题组的工作基础,特别是近期利用SECM筛选合适金属离子掺杂改性WO3光阳极的工作,对SECM在筛选半导体电极材料方面的应用特点进行了实例展示介绍,最后简要总结了SECM在光电能源研究领域的发展及方向。何辉超 Sean P.Berglund C.Buddie Mullins 周勇 柯改利 董发勤 2016化学进展2016,28,6:2
2Direct evidence for chlorine-enhanced urban ozone formation in Houston, Texas显示文摘Paul L Tanaka Daniel D Riemer Sunghye Chang Greg Yarwood Elena C McDonald-Buller Eric C Apel John J Orlando Philip J Silva Jose L Jimenez Manjula R Canagaratna James D Neece C.Buddie Mullins David T Allen 2003Atmospheric Environment2003,,9:1
3Restructuring the lithium-ion battery:A perspective on electrode architectures显示文摘The lithium-ion battery(LIB)has enabled portable energy storage,yet increasing societal demands have moti-vated a new generation of more advanced LIBs.Although the discovery and optimization of battery active ma-terials has been the subject of extensive study since the 1980s,the most disruptive advancements of commercial LIBs in the past decade stem instead from overall cell design and engineering.In pursuit of higher energy density and fast-charging capability,strategies focused on tuning the properties of composite electrode architectures(e.g.,porosity,conductivity,tortuosity,spatial heterogeneity)by restructuring the inactive component matrix of LIB electrode films have recently garnered attention.This perspective explores recent advances in electrode design through an applied lens,emphasizing synthetic platforms and future research directions that are scalable,commercially feasible,and applicable to a wide range of active materials.We introduce and critically assess recently proposed strategies for structuring electrode architectures,including spatial gradients of local compo-sition and microstructure;metal-foil current collector alternatives;and electrode templating techniques,evalu-ating both achievements in battery performance and commercial applicability.Coupled with improved active materials,new electrode architectures hold promise to unlock next generation LIBs.Samantha N.Lauro James N.Burrow C.Buddie Mullins 2023eScience2023,3,4:0
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