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Front Cover: Pulsed Electrodeposition of Co3O4 Nanocrystals on One‐Dimensional ZnO Scaffolds for Enhanced Electrochemical Water Oxidation (ChemPlusChem 10/2018)
ChemPlusChem ( IF 3.4 ) Pub Date : 2018-09-24 , DOI: 10.1002/cplu.201800452
Hao Wu 1 , Shangyi Li 2 , Xinxin Lu 1 , Cui Ying Toe 1 , Hoi Ying Chung 1 , Yiming Tang 2 , Xunyu Lu 1 , Rose Amal 1 , Laisheng Li 2 , Yun Hau Ng 1
Affiliation  

The front cover shows ultrathin Co3O4 nanoflakes that are deposited on ZnO nanorods by pulsed electrodeposition. The performance of the nanostructured hybrid Co3O4/ZnO anode in electrochemical O2 evolution is better than that of neat Co3O4. Well‐aligned one‐dimensional ZnO nanorod arrays are integrated as a scaffold which functions as a “highway” to facilitate improved charge transfer, while the porosity of the anode material allows the penetration of the electrolyte, thus promoting efficient utilization of the catalytically active species. Details are given in the Full Paper by Y. Tang, Y. H. Ng, and co‐workers on page 934 in Issue 10, 2018 (DOI: 10.1002/cplu.201800218).
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中文翻译:

前盖:一维ZnO支架上Co3O4纳米晶体的脉冲电沉积以增强电化学水氧化(ChemPlusChem 10/2018)

前盖显示了超薄的Co 3 O 4纳米薄片,该薄片通过脉冲电沉积沉积在ZnO纳米棒上。纳米结构的Co 3 O 4 / ZnO杂化阳极在电化学O 2析出方面的性能优于纯Co 3 O 4。排列良好的一维ZnO纳米棒阵列作为支架集成在一起,起到“高速公路”的作用,以促进改善的电荷转移,而阳极材料的孔隙率允许电解质渗透,从而促进催化活性物质的有效利用。详细信息请参见Y. Tang,Y。H. Ng及其同事在2018年第10期中的第934页(DOI:10.1002 / cplu.201800218)。
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更新日期:2018-09-24
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