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4篇 您的检索式:作者名="TONG Yuqiang"
    题名 作者 年代 出处 被引量
1: general and versatile nonlinear analysis program for concrete bridge structure 显示文摘XI&NG Tianyu TONG Yuqiang ZIIAO Nen:a 2005Edv:nces in Engineering Software2005,36,10:1
2A general and versatile nonlinear analysis program for concrete bridge structure显示文摘XIANG Tianyu TONG Yuqiang ZHAO Renda 0,,02:1
3A general and versatile nonlinear analysis program for concrete bridge structure显示文摘XIANG TIANYU TONG YUQIANG ZHAO RENDA 2005Advances in Engineering Software2005,36,10:1
4Up-Scalable Fabrication of SnO_(2)with Multifunctional Interface for High Performance Perovskite Solar Modules显示文摘Tin dioxide(SnO_(2))has been demonstrated as one of the promising electron transport layers for high-efficiency perovskite solar cells(PSCs).However,scalable fabrication of SnO_(2) films with uniform coverage,desirable thickness and a low defect density in perovskite solar mod-ules(PSMs)is still challenging.Here,we report preparation of high-quality large-area SnO_(2) films by chemical bath depo-sition(CBD)with the addition of KMnO_(4).The strong oxidiz-ing nature of KMnO_(4) promotes the conversion from Sn(II)to Sn(VI),leading to reduced trap defects and a higher carrier mobility of SnO_(2).In addition,K ions diffuse into the per-ovskite film resulting in larger grain sizes,passivated grain boundaries,and reduced hysteresis of PSCs.Furthermore,Mn ion doping improves both the crystallinity and the phase stability of the perovskite film.Such a multifunctional interface engineering strategy enabled us to achieve a power conversion efficiency(PCE)of 21.70% with less hysteresis for lab-scale PSCs.Using this method,we also fabricated 5×5 and 10×10 cm^(2) PSMs,which showed PCEs of 15.62% and 11.80%(active area PCEs are 17.26%and 13.72%),respectively.For the encapsulated 5×5 cm^(2) PSM,we obtained a T80 operation lifetime(the lifespan during which the solar module PCE drops to 80%of its initial value)exceeding 1000 h in ambient condition.Guoqing Tong Luis KOno Yuqiang Liu Hui Zhang Tongle Bu Yabing Qi 2021Nano-Micro Letters2021,13,10:0
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