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小区非住宅电能类别刍议
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作者 毛国江 《住宅与房地产》 2016年第4X期80-,99,共2页
通过工程实例和政策来探讨小区非住宅的电能类别,目的是控制电能类别设计或检查改造已使用的电能类别,对电能混用现象进行了原因分析、并提出一些协商处理建议,总结并兼顾投资、供给和用户的利益。
关键词 非住宅 电能类别 民用电能 商业电能 电能混用
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Electrochemical hydrogenation of mixed-phase TiO2 nanotube arrays enables remarkably enhanced photoelectrochemical water splitting performance 被引量:4
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作者 Jiaqin Liu Mengjia Dai +6 位作者 Jian Wu Ying Hu Qi Zhang Jiewu Cui Yan Wang Hark Hoe Tan Yucheng Wu 《Science Bulletin》 SCIE EI CSCD 2018年第3期194-202,共9页
We first report that photoelectrochemical (PEC) performance of electrochemically hydrogenated TiO2 nanotube arrays (TNTAs) as high-efficiency photoanodes for solar water splitting could be well tuned by designing ... We first report that photoelectrochemical (PEC) performance of electrochemically hydrogenated TiO2 nanotube arrays (TNTAs) as high-efficiency photoanodes for solar water splitting could be well tuned by designing and adjusting the phase structure and composition of TNTAs. Among various TNTAs annealed at different temperature ranging from 300 to 700℃, well-crystallized single anatase (A) phase TNTAs-400 photoanode shows the best photoresponse properties and PEC performance due to the favor- able crystallinity, grain size and tubular structures. After electrochemical hydrogenation (EH). anatase- rutile (A-R) mixed phase EH-TNTAs-600 photoanode exhibits the highest photoactivity and PEC perfor- mance for solar water splitting. Under simulated solar illumination, EH-TNTAs-600 achieves the best photoconversion efficiency of up to 1.52% and maximum H2 generation rate of 40.4 ~mol h i cm-2, our- stripping other EH-TNTAs photoanodes. Systematic studies reveal that the signigicantly enhanced PEC performance for A-R mixed phaes EH-TNTAs-600 photoanode could be attributed to the synergy of A-R mixed phases and intentionally introduced Ti3~ (oxygen vacancies) which enhances the photoactivity over both UV and visible-light regions, and boosts both charge separation and transfer efficiencies. These findings provide new insight and guidelines for the construction of highly efficient TiO2-based devices for the application of solar water splitting. 展开更多
关键词 TNTAs Electrochemical hydrogenation Phase Photoelectrochemistry Hydrogen generation
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