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4篇 您的检索式:作者名="MA Feiping"
    题名 作者 年代 出处 被引量
1A Recyclable Magnetic Nanopartieles Supported Antimony Catalyst for the Syn- thesis of N-substituted Pyrroles in Water显示文摘MA Feiping Ll Peihe LI Baole 2013Appl Catal A Gen2013,457,1:1
2A New and Efficient Procedure for Friedlander Synthesis of Quinolines in Low Melting Tartaric Acid-urea Mixtures显示文摘MA Feiping CHENG Guitian HE Zhiguo 2012Aust J Chem2012,65,4:1
3Highly Efficient Low Melting Mixture Catalyzed Synthesis of 1,8-Dioxo-dodecahydroxanthene Derivatives显示文摘低融化的柠檬性的酸脲的混合物被发现是由芳香的醛和周期的 1,3-dicarbobonyl 混合物的冷凝作用的 1,8-dioxo-dodecahydroxanthene 衍生物的环境地友好的合成的新、有效的支持的媒介。这深最容易溶解的溶剂充当反应媒介和催化剂,供应在到优秀收益的高度的 xanthenediones。Peihe Li Feiping Ma Ping Wang Zhanhui Zhang 2013Chinese Journal of Chemistry2013,31,6:0
4Solvents incubatedπ-πstacking in hole transport layer for perovskite-silicon 2-terminal tandem solar cells with 27.21%efficiency显示文摘Room temperature sputtered inorganic nickel oxide(NiO_(x))is one of the most promising hole transport layers(HTL)for perovskite-sillion 2-terminal tandem solar cells with the aid of ultrathin and compact organic layers to passivate the surface defects.In this study,the aromatic solvent with different substituent groups was used to regulate the conformation of poly[bis(4-phenyl)(2,4,6-trimethylphenyl)am ine](PTAA)layer.As a result,the single-junction perovskite solar cell(PSC)gained a power conversion efficiency(PCE)of 20.63%,contributing to a 27.21%efficiency for monolithic perovskite/silicon(double-side polished)2-terminal tandem solar cell,by applying the alkyl aromatic solvent to enhance theπ-πstacking of PTAA molecular chains.The tandem solar cell can maintain 95%initial efficiency after aging over 1000 h.This study provides a universal approach for improving the photovoltaic performance of NiO_(x)/polymer-based perovskite/silicon tandem solar cells and other single junction inverted PSCs.Qiaoyan Ma Jufeng Qiu Yuzhao Yang Fei Tang Yilin Zeng Nanxi Ma Bohao Yu Feiping Lu Chong Liu Andreas Lambertz Weiyuan Duan Kaining Ding Yaohua Mai 2023Journal of Energy Chemistry2023,,7:0
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