Search Results - "Ma, Chang‐Qi"

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  1. 1

    Manipulating Charge Transfer and Transport via Intermediary Electron Acceptor Channels Enables 19.3% Efficiency Organic Photovoltaics by Zhan, Lingling, Li, Shuixing, Li, Yaokai, Sun, Rui, Min, Jie, Chen, Yiyao, Fang, Jin, Ma, ChangQi, Zhou, Guanqing, Zhu, Haiming, Zuo, Lijian, Qiu, Huayu, Yin, Shouchun, Chen, Hongzheng

    Published in Advanced energy materials (01-10-2022)
    “…Balancing and improving the open‐circuit voltage (Voc) and short‐circuit current density (Jsc) synergistically has always been the critical point for organic…”
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  2. 2

    The Distance Between Phosphate‐Based Polyanionic Compounds and Their Practical Application For Sodium‐Ion Batteries by Hao, Zhiqiang, Shi, Xiaoyan, Yang, Zhuo, Zhou, Xunzhu, Li, Lin, Ma, ChangQi, Chou, Shulei

    Published in Advanced materials (Weinheim) (01-02-2024)
    “…Sodium‐ion batteries (SIBs) are a viable alternative to meet the requirements of future large‐scale energy storage systems due to the uniform distribution and…”
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  3. 3

    Versatile Sequential Casting Processing for Highly Efficient and Stable Binary Organic Photovoltaics by He, Chengliang, Pan, Youwen, Lu, Guanghao, Wu, Baohua, Xia, Xinxin, Ma, ChangQi, Chen, Zeng, Zhu, Haiming, Lu, Xinhui, Ma, Wei, Zuo, Lijian, Chen, Hongzheng

    Published in Advanced materials (Weinheim) (01-08-2022)
    “…Forming an ideal bulk heterojunction (BHJ) morphology is a critical issue governing the photon to electron process in organic solar cells (OSCs). Complementary…”
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    Functional Oligothiophenes: Molecular Design for Multidimensional Nanoarchitectures and Their Applications by Mishra, Amaresh, Ma, Chang-Qi, Bäuerle, Peter

    Published in Chemical reviews (11-03-2009)
    “…Aesthetic and functional design in the molecular structure of oligothiophenes is discussed. These compounds are ideal models for polymer construction and are…”
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    Balancing the Molecular Aggregation and Vertical Phase Separation in the Polymer: Nonfullerene Blend Films Enables 13.09% Efficiency of Organic Solar Cells with Inkjet‐Printed Active Layer by Chen, Xingze, Huang, Rong, Han, Yunfei, Zha, Wusong, Fang, Jin, Lin, Jian, Luo, Qun, Chen, Zheng, Ma, ChangQi

    Published in Advanced energy materials (01-03-2022)
    “…Drop‐on demand inkjet‐printing (IJP) is a deposition technique with promise in the context of fabricating large‐area organic solar cells (OSCs) because of its…”
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    Solution Processed Semi‐Transparent Organic Solar Cells Over 50% Visible Transmittance Enabled by Silver Nanowire Electrode with Sandwich Structure by Sun, Shaoming, Zha, Wusong, Tian, Chenyang, Wei, Zhixiang, Luo, Qun, Ma, ChangQi, Liu, Wuyue, Zhu, Xiaozhang

    Published in Advanced materials (Weinheim) (01-11-2023)
    “…Photovoltaic windows with easy installation for the power supply of household appliances have long been a desire of energy researchers. However, due to the…”
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  9. 9

    Inkjet printed silver nanowire network as top electrode for semi-transparent organic photovoltaic devices by Lu, Hui, Lin, Jian, Wu, Na, Nie, Shuhong, Luo, Qun, Ma, Chang-Qi, Cui, Zheng

    Published in Applied physics letters (02-03-2015)
    “…A method for direct inkjet printing of silver nanowire (Ag NW) to form transparent conductive network as the top electrode for inverted semi-transparent…”
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  10. 10

    Revealing the Mechanism behind the Catastrophic Failure of n‐i‐p Type Perovskite Solar Cells under Operating Conditions and How to Suppress It by Ding, Changzeng, Yin, Li, Zhang, Lianping, Huang, Rong, Fan, Shizhao, Luo, Qun, Lin, Jian, Li, Fangsen, Zhao, Chun, Österbacka, Ronald, Ma, ChangQi

    Published in Advanced functional materials (01-10-2021)
    “…The n‐i‐p type perovskite solar cells suffer unpredictable catastrophic failure under operation, which is a barrier for their commercialization. The…”
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  11. 11

    Elimination of Drying‐Dependent Component Deviation Using a Composite Solvent Strategy Enables High‐Performance Inkjet‐Printed Organic Solar Cells with Efficiency Approaching 16 by Sang, Lifeng, Chen, Xingze, Fang, Jin, Xu, Peng, Tian, Wenming, Shui, Ke, Han, Yunfei, Wang, Hao, Huang, Rong, Zhang, Qing, Luo, Qun, Ma, ChangQi

    Published in Advanced functional materials (01-11-2023)
    “…Inkjet printing (IJP) is a roll‐to‐roll (R2R) compatible fabrication method for large‐area organic solar cells (OSCs). Unlike the coating process, the films…”
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  12. 12

    A Multifunctional Molecular Bridging Layer for High Efficiency, Hysteresis‐Free, and Stable Perovskite Solar Cells by Yin, Li, Ding, Changzeng, Liu, Chenguang, Zhao, Chun, Zha, Wusong, Mitrovic, Ivona Z., Lim, Eng Gee, Han, Yunfei, Gao, Xiaomei, Zhang, Lianping, Wang, Haibin, Li, Yuanxi, Wilken, Sebastian, Österbacka, Ronald, Lin, Hongzhen, Ma, ChangQi, Zhao, Cezhou

    Published in Advanced energy materials (01-07-2023)
    “…At present, the dominating electron transport material (ETL) and hole transport material (HTL) used in the state‐of‐the‐art perovskite solar cells (PSCs) are…”
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  13. 13

    Silane-Capped ZnO Nanoparticles for Use as the Electron Transport Layer in Inverted Organic Solar Cells by Wei, Junfeng, Ji, Guoqi, Zhang, Chujun, Yan, Lingpeng, Luo, Qun, Wang, Cheng, Chen, Qi, Yang, Junliang, Chen, Liwei, Ma, Chang-Qi

    Published in ACS nano (26-06-2018)
    “…Zinc oxide (ZnO) nanoparticles are widely used as electron- transport layer (ETL) materials in organic solar cells and are considered to be the candidate with…”
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  14. 14

    An ITO‐Free Kesterite Solar Cell by Ji, Yixiong, Chen, Wangxian, Yan, Di, Bullock, James, Xu, Yang, Su, Zhenghua, Yang, Wentong, Laird, Jamie Stuart, Zheng, Tian, Wu, Na, Zha, Wusong, Luo, Qun, Ma, ChangQi, Smith, Trevor A., Liu, Fangyang, Mulvaney, Paul

    “…Photovoltaic thin film solar cells based on kesterite Cu2ZnSn(S, Se)4 (CZTSSe) have reached 13.8% sunlight‐to‐electricity conversion efficiency. However, this…”
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    Large‐Area Gravure‐Printed AgNWs Electrode on Water/Oxygen Barrier Substrate for Long‐Term Stable Large‐Area Flexible Organic Solar Cells by Wang, Hao, Pan, Yaqin, Han, Yunfei, Chen, Zhuo, Liu, Tianyu, Zhang, Lianping, Luo, Qun, Ma, ChangQi

    Published in Chinese journal of chemistry (01-03-2024)
    “…Comprehensive Summary Large‐area AgNWs electrodes (25 cm × 10 cm) were fabricated through roll‐to‐roll printing on the polyvinyl alcohol (PVA) modified water…”
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  17. 17

    Thermal-Induced Performance Decay of the State-of-the-Art Polymer: Non-Fullerene Solar Cells and the Method of Suppression by Qin, Xingxing, Yu, Xuelai, Li, Zerui, Fang, Jin, Yan, Lingpeng, Wu, Na, Nyman, Mathias, Österbacka, Ronald, Huang, Rong, Li, Zhiyun, Ma, Chang-Qi

    Published in Molecules (Basel, Switzerland) (28-09-2023)
    “…Improving thermal stability is of great importance for the industrialization of polymer solar cells (PSC). In this paper, we systematically investigated the…”
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    Solution-Processed Bulk-Heterojunction Solar Cells Based on Monodisperse Dendritic Oligothiophenes by Ma, Chang-Qi, Fonrodona, Marta, Schikora, Martin C., Wienk, Martijn M., Janssen, René A. J., Bäuerle, Peter

    Published in Advanced functional materials (23-10-2008)
    “…A novel family of soluble conjugated dendritic oligothiophenes (DOTs) as monodisperse 3D macromolecular architectures was characterized with respect to optical…”
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  19. 19

    Modification of the Highly Conductive PEDOT:PSS Layer for Use in Silver Nanogrid Electrodes for Flexible Inverted Polymer Solar Cells by Wang, Jie, Fei, Fei, Luo, Qun, Nie, Shuhong, Wu, Na, Chen, Xiaolian, Su, Wenming, Li, Yuanjie, Ma, Chang-Qi

    Published in ACS applied materials & interfaces (01-03-2017)
    “…Silver nanogrid based flexible transparent electrode is recognized as the most promising alternative to ITO electrode for organic electronics, owing to its low…”
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  20. 20

    Inkjet-Printed Organic Solar Cells and Perovskite Solar Cells: Progress, Challenges, and Prospect by Chen, Xing-Ze, Luo, Qun, Ma, Chang-Qi

    Published in Chinese journal of polymer science (01-08-2023)
    “…In recent years, the power conversion efficiency of organic solar cells (OSCs) and perovskite (PVSCs) has increased to over 19% and 25%, respectively…”
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