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Band gap modulation of nanostructured WO_(3) nanoplate film by Ti doping for enhanced photoelectrochemical performance 被引量:2
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作者 TANG Ya-qin JIANG Di +8 位作者 WANG Huan zheng hong-ye REN Lu-jun WEI Kui-xian MA Wen-hui DAI Yong-nian LUO Da-jun ZHANG Xue-liang LIU Yi-ke 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第9期2968-2979,共12页
Despite being a promising photoanode material for water splitting,WO_(3) has low conductivity,high onset potential,and sluggish water oxidation kinetics.In this study,we designed Ti-doped WO_(3) nanoplate arrays on fl... Despite being a promising photoanode material for water splitting,WO_(3) has low conductivity,high onset potential,and sluggish water oxidation kinetics.In this study,we designed Ti-doped WO_(3) nanoplate arrays on fluoride-doped tin oxide by a seed-free hydrothermal method,and the effects of doping on the photoelectrochemical performance were investigated.The optimal Ti-doped WO_(3) electrode achieved a photocurrent density of 0.53 mA/cm^(2) at 0.6 V(vs Ag/AgCl),110%higher than that of pure WO_(3) nanoplate arrays.Moreover,a significant cathodic shift in the onset potential was observed after doping.X-ray photoelectron spectroscopy valence band and ultraviolet–visible spectra revealed that the band positions of Ti-doped WO_(3) photoanodes moved upward,yielding a lower onset potential.Furthermore,electrochemical impedance spectroscopy measurements revealed that the conductivities of the WO_(3) photoanodes improved after doping,because of the rapid separation of photo-generated charge carriers.Thus,we report a new design route toward efficient and low-cost photoanodes for photoelectrochemical applications. 展开更多
关键词 WO_(3) Ti doping PHOTOANODE band structure engineering surface charge separation
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135MW机组低压末级叶片裂纹原因分析 被引量:3
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作者 周正强 郑宏晔 +2 位作者 胡洁梓 周宇通 张小菊 《汽轮机技术》 北大核心 2019年第6期479-480,446,共3页
某火力发电厂135MW机组2Crl2MoV钢低压末级叶片进汽边出现大量密集裂纹,通过成分、力学性能、金相检验以及断口形貌的分析,认为高频淬火硬化工艺致使低压末级叶片进汽边表面硬化区域完全淬透,淬火相变组织应力较高,塑性功低,是叶片产生... 某火力发电厂135MW机组2Crl2MoV钢低压末级叶片进汽边出现大量密集裂纹,通过成分、力学性能、金相检验以及断口形貌的分析,认为高频淬火硬化工艺致使低压末级叶片进汽边表面硬化区域完全淬透,淬火相变组织应力较高,塑性功低,是叶片产生裂纹的主要原因。 展开更多
关键词 叶片 裂纹 高频淬火 塑性功
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