基本信息

杨华  女    中国科学院高能物理研究所
电子邮件: yanghua@ihep.ac.cn
通信地址:广东省东莞市大朗镇中子源路1号
邮政编码:523803

研究领域

高分子物理与化学,小角中子散射

招生信息

教育背景

   
学历

2005.09-2009.06   四川大学          高分子材料加工工程    工学学士

2009.09-2015.01   中国科学院大学    高分子物理与化学      理学博士


学位

2005.09-2009.06   四川大学          高分子材料加工工程    工学学士

2009.09-2015.01   中国科学院大学    高分子物理与化学      理学博士


工作经历

2015.01-2016.10    中国科学院高能物理研究所     博士后

2016.10-至今         散裂中子源科学中心                 助理研究员

2018.06-2019.06    澳大利亚核科学技术与组织     Young Research Fellow


专利与奖励

一种复合氧化物Li1-xMn0.8Ni0.2O2及其制备方法和应用

硅掺杂铁基聚阴离子化合物及其制备方法和应用

层状结构的LiNi0.69Mn0.23Co0.08O2化合物及其制备方法和应用

出版信息

1. Optimizing the Intercrystallite Connection of a Donor -Acceptor Conjugated Semiconductor Polymer by Controlling the Crystallization Rate via Temperature, Macromolecular Rapid Communications, 43, 2022, 2200084

2. Evaluation of Polymorphism and Charge Transport in BaO-CaO-Ta2O5 Perovskite Phase Diagram Using TOF-neutron and synchrotron X-ray diffraction, Bond-valence method and Impedance Spectroscopy, Journal of Materials Chemistry A, 2022,10, 22257-22270

3. Incubating High-Quality Perovskite film via Facial Mask Technique for Efficient and Stable Solar Cells, Advanced Functional Materials, 33, 2023, 2210417

4. Efficient Na+-storage in a Li4Ti5O12 anode to expand the voltage-window for full SIBs of high energy density, RSC Adv., 2021, 11, 37700-37707

5. Ionic selective contact controls the charge accumulation for efficient and intrinsic stable planar homo-junction perovskite solar cells, 66, 2019, 104098




发表论文
[1] 杨华. Evaluation of Polymorphism and Charge Transport in BaO-CaO-Ta2O5 Perovskite Phase Diagram Using TOF-neutron and synchrotron X-ray diffraction, Bond-valence method and Impedance Spectroscopy. J. Mater. Chem. A[J]. 2022, [2] Li, Hongxiang, Liu, Xinyu, Jin, Tianya, Zhao, Kefeng, Zhang, Qiang, He, Chunyong, Yang, Hua, Chen, Yu, Huang, Jianyao, Yu, Xinhong, Han, Yanchun. Optimizing the Intercrystallite Connection of a Donor-Acceptor Conjugated Semiconductor Polymer by Controlling the Crystallization Rate via Temperature. MACROMOLECULAR RAPID COMMUNICATIONS[J]. 2022, 43(16): http://dx.doi.org/10.1002/marc.202200084.
[3] Tang, Senlin, Zhao, Lian, Li, Hongxiang, Zong, Jiawei, Zhu, Zheng, Peng, Ying, Yang, Hua, Chen, Runfeng, Li, Mingguang. Incubating High-Quality Perovskite Film via Facial Mask Technique for Efficient and Stable Solar Cells. ADVANCED FUNCTIONAL MATERIALS. 2022, [4] Li, Chao, Luo, Binhui, Zhao, Youman, Chen, Yongsheng, Yang, Hua, Song, Jingang, Zhao, Lili, Fu, Xiaobo. Efficient Na+-storage in a Li4Ti5O12 anode to expand the voltage-window for full SIBs of high energy density. RSC ADVANCES[J]. 2021, 11(60): 37700-37707, [5] 杨华. Toward High-Efficiency, Hysteresis-Less, Stable Perovskite Solar Cells: Unusual Doping of Hole-Transporting Material Using a Fluorine-Containing Hydrophobic Lewis Acid. Energy & Environmental Science[J]. 2018, [6] Zhao, Qiaoqiao, Liu, Jiangang, Wang, Haiyang, Li, Mingguang, Zhou, Ke, Yang, Hua, Han, Yanchun. Balancing the H- and J-aggregation in DTS(PTTh2)(2)/PC70BM to yield a high photovoltaic efficiency. JOURNAL OF MATERIALS CHEMISTRY C[J]. 2015, 3(31): 8183-8192, http://ir.ciac.jl.cn/handle/322003/65107.
[7] Yang, Hua, Wang, Lei, Yu, Xinhong, Zhang, Jidong, Geng, Yanhou, Han, Yanchun. Nanowire Shish-Kebab Structures and Molecular Orientation Control of All-Conjugated Diblock Copolymers. CHEMISTRY-AN ASIAN JOURNAL[J]. 2014, 9(8): 2239-2248, http://dx.doi.org/10.1002/asia.201301610.