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研究成果

重要项目

(1) 可印刷柔性电子器件制备表征平台, 2017.01.01-2017.12.31,重庆市条件科研专项。

(2)可印刷柔性太阳能电池研发平台建设项目, 2019.01.01-2019.12.31,中央级科学事业单位修购专项。

(3) 红原绿暖惠民中试项目,2021.11.01-2022.10.31,横向经费。

(4) 超分子有机框架材料的光伏性质研究,2021.01.01-2024.12.31,国家自然科学基金面上项目。

(5)可印刷半导体材料墨水,2019.01.01-2021.12.31,中国科学院人才项目。

(6) 新型有机光伏材料的设计合成及性能研究,2019.01.01-2022.12.31,中国科学院人才项目。

(7) 高效小分子光伏材料设计合成及性能研究,2020.01.01-2023.12.31,中国科学院人才项目。

(8) 面向光伏应用的超分子材料,2020.01.01-2022.12.31,重庆市人才项目。

代表性论文

(1) Machine learning-assisted molecular design and efficiency prediction for high-performance organic photovoltaic materials. SCIENCE ADVANCES, 2019, 5, eaay4275.

(2) All-Small-Molecule Organic Solar Cells with an Ordered Liquid Crystalline Donor. JOULE, 2019, 3, 3034.

(3) Benzodithiophene-Based Small-Molecule Donors for Next-Generation All-Small- Molecule Organic Photovoltaics. MATTER, 2020, 3, 1403.

(4) 15.34% efficiency all-small-molecule organic solar cells with an improved fill factor enabled by a fullerene additive. ENERGY & ENVIRONMENTAL SCIENCE, 2020, 13, 2134.

(5) Semiconducting Copolymers with Naphthalene Imide/Amide π-Conjugated Units: Synthesis, Crystallography, and Systematic Structure-Property-Mobility Correlations. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2023, 61, e202208201.

(6) The Electrical Behaviors of Grain Boundaries in Polycrystalline Optoelectronic Materials. ADVANCED MATERIALS, 2023, e2304855.

(7)  Insights Into Pre-aggregation Control of Y-series Non-fullerene Acceptors in Liquid State for Highly Efficient Binary Organic Solar Cells. ADVANCED MATERIALS, 2024, 2402833.

(8) Rational molecular and device design enables organic solar cells approaching 20% efficiency. NATURE COMMUNICATIONS, 2024, 15, 1830.

专利

(1) 一种小分子电子给体材料及其制备与应用, CN20191045881 4.2,2019-05-29.

(2) 一种含有吡啶聚合物的光伏器件, CN2019100274 2.2,2019-01-11.

(3) 双功能层全小分子非富勒烯体系有机太阳能电池, CN20181130001 8.8,2018-11-02.

(4) 一种太阳能热电联供组件的瞬态热电输出计算方法及系统,CN202110177249X,2021-02-07.

(5) 聚光型太阳能热电联供组件输出性能检测平台及方法,2023108359488,2023-07-07.