基本信息
蔡芸皓 材料科学与光电技术学院
电子邮件: caiyunhao@ucas.ac.cn
通信地址:
邮政编码:
研究领域
有机光电功能材料与器件
招生信息
招收材料/化学/物理专业 博士、硕士生及博士后
招生专业
080501-材料物理与化学080502-材料学070305-高分子化学与物理
招生方向
有机光电功能材料与器件光电器件物理
教育背景
2014-09--2019-06 北京航空航天大学 博士2010-09--2014-06 天津工业大学 学士
专利与奖励
获奖情况
- 中国青年女科学家团队奖, 国家级, 2026
- 中国光学十大进展提名奖, , 国家级, 2025
专利情况
- 一种基于圆偏振光响应的有机光电突触晶体管器件、聚合物、制备方法及应用, 发明专利, 2026, 第 1 作者,
- 一种基于反溶剂法调控分子堆积的有机光电探测器及其制备方法, 发明专利, 2025, 第 1 作者,
- 一种阴极杂化界面与其应用, 发明专利, 2025, 第 2 作者
发表论文
- Organic solar cells with 21% efficiency enabled by a hybrid interfacial layer with dual-component synergy, Nature Materials, 2025, 通讯作者
- Vacuum-induced interfacial compaction for scalable fabrication of high-performance organic solar cells, Nature Communications, 2026, 通讯作者
- Synergistic Optimization of Ternary Active Layer and Transparent Electrode for High-Performance Flexible Organic Solar Cells, Advanced Functional Materials, 2025, 通讯作者
- Highly efficient organic solar cells enabled by suppressing triplet exciton formation and non-radiative recombination, Nature Communications, 2024, 通讯作者
- High Performance As-Cast Organic Solar Cells Enabled by a Refined Double-Fibril Network Morphology and Improved Dielectric Const, Advanced Materials, 2024, 通讯作者
- Over 18% Efficiency Ternary Organic Solar Cells with 300 nm Thick Active Layer Enabled by an Oligomeric Acceptor, Advanced Materials, 2024, 通讯作者
- Towards Artificial Visual Sensory System: Organic Optoelectronic Synaptic Materials and Devices, Angewandte Chemie International Edition, 2023, 通讯作者
- Improved Molecular Ordering in a Ternary Blend Enables All-Polymer Solar Cells over 18% Efficiency, Advanced Materials, 2023, 第 1 作者
- Vertically optimized phase separation with improved exciton diffusion enables efficient organic solar cells with thick active layers, Nature Communications, 2022, 第 1 作者
- Polymerized Small Molecular Acceptor with Branched Side Chains for All Polymer Solar Cells with Efficiency over 16.7%, Advanced Materials, 2022, 通讯作者
- Improved Molecular Ordering in a Ternary Blend Enables All-Polymer Solar Cells over 18% Efficiency, Advanced Materials, 2022, 第 1 作者
- A Well-Mixed Phase Formed by Two Compatible Non-Fullerene Acceptors Enables Ternary Organic Solar Cells with Efficiency over 18.6%, Advanced Materials, 2021, 第 1 作者
- A facile strategy for third-component selection in non-fullerene acceptor-based ternary organic solar cells, ENERGY & ENVIRONMENTAL SCIENCE, 2021, 通讯作者
- Ferrocene as a highly volatile solid additive in non-fullerene organic solar cells with enhanced photovoltaic performance, ENERGY & ENVIRONMENTAL SCIENCE, 2020, 第 2 作者 通讯作者
- Solution-Processed Organic Solar Cells with High Open-Circuit Voltage of 1.3 V and Low Non-Radiative Voltage Loss of 0.16 V, Advanced Materials, 2020, 共同第一作者
项目承担情况
- 国家自然科学基金青年科学基金B类(原优青),2026-01-01至2028-12-31
- 新率先行动B类-蔡芸皓(原中国科学院****), 2024-03-14至2026-12-31
- 国家自然科学基金面上项目 2025-01-01至2028-12-31
- 科研启动经费(人才引进工程),2024-05-21至 2029-02-27
- 中国科学院自主部署项目, 2023-09-12至2027-12-31