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Synthesis and application of green solvent dispersed organic semiconducting nanoparticles
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作者 Siwen Zhang Hong Zhang +9 位作者 Shuo Yang Xin Zhang Shilin Li Liqing Huang Ya-nan Jing Linge Xiao Yuan Zhang Bing Han Jia-jie Kang Huiqiong Zhou 《Nano Research》 SCIE EI CSCD 2023年第12期13419-13433,共15页
Organic photovoltaic semiconductors have made significant progress and have promising application prospects after decades of development.When compared with traditional semiconductors,the solution method for preparing ... Organic photovoltaic semiconductors have made significant progress and have promising application prospects after decades of development.When compared with traditional semiconductors,the solution method for preparing photovoltaic semiconductors shows the advantages of low cost and convenient preparation.However,because of the extremely poor solubility of the polymers used to prepare semiconductors,toxic solvents must be used when using the solution method,which has significant negative effects on the environment and operators and severely limits its development prospects.Organic nanoparticles(NPs),on the other hand,can avoid these issues.Because NPs are typically water or alcohol-based,no toxic solvents are used.Furthermore,NPs have been used in organic solar cells,hydrogen catalysis,organic light-emitting diodes,and other fields after nearly two decades of development,and their preparation methods have been developed.We describe the preparation,optimization,and application of NPs in photovoltaic semiconductors in this review. 展开更多
关键词 NANOPARTICLE organic semiconductor miniemulsion method nanoprecipitation method SURFACTANT
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Development and application of blade-coating technique in organic solar cells 被引量:1
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作者 Xin Zhang Hong Zhang +5 位作者 Shilin Li Linge Xiao Siwen Zhang Bing Han Jiajie Kang Huiqiong Zhou 《Nano Research》 SCIE EI CSCD 2023年第9期11571-11588,共18页
Due to the characteristics of lower material waste,higher crystallinity,roll-to-roll compatibility,and high-throughput continuous processing,blade-coating has been widely applied in the preparation of large-area organ... Due to the characteristics of lower material waste,higher crystallinity,roll-to-roll compatibility,and high-throughput continuous processing,blade-coating has been widely applied in the preparation of large-area organic solar cells.In this paper,the technique of blade-coating is introduced,including the effects of blading speed,substrate temperature,and other technological innovations during the process of blade-coating.Besides,the recent progress of blade-coating in organic solar cells is summarized and the active layer prepared by a blade-coating method is introduced in detail,including materials,processing methods,solvents,and additives.The interface layer and electrodes prepared by the blade-coating method are also discussed.Finally,some perspectives on the blade-coating method are proposed.In the foreseeable future,blade-coating will become the core of batch production of large-area organic solar cells,so as to make organic solar cells more competitive. 展开更多
关键词 blade-coating printable organic solar cells LARGE-AREA
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Solution-processed Molybdenum Oxide Hole Transport Layer Stabilizes Organic Solar Cells
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作者 Yan-Fu Liu Si-Wen Zhang +11 位作者 Yan-Xun Li Shi-Lin Li Li-Qing Huang Ya-Nan Jing Qian Cheng Lin-Ge Xiao Bo-Xin Wang Bing Han Jia-Jie Kang Yuan Zhang Hong Zhang Hui-Qiong Zhou 《Chinese Journal of Polymer Science》 SCIE EI CAS CSCD 2023年第2期202-211,共10页
The hole transport layer(HTL)affects the device performance and stability of organic solar cells.In this work,a stable molybdenum oxide(MoO_(x))hole transport layer with low cost was prepared by adjusting the state of... The hole transport layer(HTL)affects the device performance and stability of organic solar cells.In this work,a stable molybdenum oxide(MoO_(x))hole transport layer with low cost was prepared by adjusting the state of the precursor solution with an alcoholic solution of molybdenum acetylacetonate through an oxidant.The MoO_(x) transport layer has good transmittance with a work function of 5.07 eV and higher surface energy.The PM6:Y6 devices using MoO_(x) HTL achieve a high efficiency of 16.8%.MoO_(x) HTL exhibits good applicability with excellent performance in both ternary and all-polymer systems.Air storage stability T80 of the all-polymer device using MoO_(x) HTL was over 600 h,much higher than 70 h of the PEDOT:PSS-based device,and its thermal stability at 85℃ and operational stability under light show better stability than that of the PEDOT:PSS hole transport layer.This work provides a facile and low-cost method to fabricate HTL for organic solar cells,which is beneficial to improve their efficiency and stability. 展开更多
关键词 Hole transport layer Molybdenum oxide STABILITY
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