余楨華,武漢大學物理科學與技術學院教授。
基本介紹
- 中文名:余楨華
- 職業:教師
個人簡介,教育及工作經歷,研究方向簡介,代表性工作,
個人簡介
余楨華,博士生導師,主要研究方向為:“先進鈣鈦礦光電材料與器件和寬禁帶金屬氧化物半導體材料”。2022年加入武漢大學物理科學與技術學院開展鈣鈦礦光電材料與器件(Perovskite Optoelectronic Materials and Devices)的課題研究。已在Science、Nature Energy、Nature Photonics、Nature Communications、Science Advances、Joule、Advanced Materials等期刊上發表SCI論文50餘篇。曾參與973計畫、美國海軍研究項目和美國能源部重大前沿項目等科研項目。已申請2項美國發明專利和1項中國發明專利。擔任Nature Communications,Joule,Advanced Materials等SCI期刊的評審專家。擔任Nanomaterials等SCI期刊的客座編輯。
教育及工作經歷
2007-2011 武漢大學,物理科學與技術學院,學士
2011-2016 武漢大學,物理科學與技術學院,博士
2016-2018 深圳大學,光電工程學院,博士後
2017-2017 內布拉斯加大學林肯分校,機械與材料工程系,訪問學者
2018-2022 北卡羅來納大學教堂山分校,套用物理系,訪問學者、博士後研究員
2022-至今 武漢大學,物理科學與技術學院,教授
研究方向簡介
1. 鈣鈦礦光電材料與器件:立足於材料缺陷、界面工程、功能材料設計等研究,推動鈣鈦礦的穩定化、組件化發展;
2. 疊層太陽能電池:極致簡化結構的全鈣鈦礦電池研究,發展全溶液法、低成本的全鈣鈦礦疊層組件技術;
3. 低維碳材料在光電器件中的套用:依託低維碳材料發展低成本溶液法製備的透明、柔性、耐腐蝕的電極材料;
4. 雙極性金屬氧化物半導體的新性能研究與套用:金屬氧化物半導體的深能級摻雜、中間帶、雙極性載流子傳輸特性。
代表性工作
1. Zhenhua Yu#, Zhibin Yang#, Zhenyi Ni#, Yuchuan Shao, Bo Chen, Yuze Lin, Haotong Wei, Zhengshan J Yu, Zachary Holman, Jinsong Huang*, Simplified interconnection structure based on C60/SnO2-x for all-perovskite tandem solar cells, Nature Energy, 5, 9, 657-665, 2020. (ESI高被引).
2. Zhenhua Yu, Jiantao Wang,Bo Chen,Md Aslam Uddin,Zhenyi Ni,Guang Yang, Jinsong Huang*, Solution Processed Ternary Tin (II) Alloy as Hole-Transport Layer of Sn-Pb Perovskite Solar Cells for Enhanced Efficiency and Stability, Advanced Materials, 2022, https://doi.org/10.1002/adma.202205769.
3. Zhenhua Yu#, Xihan Chen#, Steven P Harvey, Zhenyi Ni, Bo Chen, Shangshang Chen, Canglang Yao, Xun Xiao, Shuang Xu, Guang Yang, Yanfa Yan, Joseph J Berry, Matthew C Beard, Jinsong Huang*, Gradient Doping in Sn–Pb Perovskites by Barium Ions for Efficient Single‐Junction and Tandem Solar Cells, Advanced Materials, 34, 16, 2110351, 2022.
4. Zhenhua Yu, Linxing Zhang, Sen Tian, Fan Zhang, Bin Zhang, Fangfang Niu, Pengju Zeng, Junle Qu, Peter Neil Rudd, Jinsong Huang*, Jiarong Lian*, Hot‐Substrate Deposition of Hole‐and Electron‐Transport Layers for Enhanced Performance in Perovskite Solar Cells, Advanced Energy Materials, 8, 2, 1701659, 2018. (當期正封面).
5. Zhenhua Yu, Bolei Chen, Pei Liu, Changlei Wang, Chenhao Bu, Nian Cheng, Sihang Bai, Yanfa Yan, Xingzhong Zhao*, Stable organic–inorganic perovskite solar cells without hole‐conductor layer achieved via cell structure design and contact engineering, Advanced Functional Materials, 26, 27, 4866-4873, 2016.
6. Bo Chen#, Zhenhua Yu#, Arthur Onno, Zhengshan Yu, Shangshang Chen, Jiantao Wang, Zachary C. Holman, Jinsong Huang*, Bifacial all-perovskite tandem solar cells, Science Advances, 8, 47, DOI: 10.1126/sciadv.add0377, 2022.
7. Jiantao Wang#, Zhenhua Yu#, Daniel D Astridge, Zhenyi Ni, Liang Zhao, Bo Chen, Mengru Wang, Ying Zhou, Guang Yang, Xuezeng Dai, Alan Sellinger, Jinsong Huang*, Carbazole-Based Hole Transport Polymer for Methylammonium-Free Tin–Lead Perovskite Solar Cells with Enhanced Efficiency and Stability, ACS Energy Letter, 7, XXX, 3353–3361, 2022.
8. Zhenhua Yu, Fei Qi, Pei Liu, Sujian You, Kiran Kumar Kondamareddy, Changlei Wang, Nian Cheng, Sihang Bai, Wei Liu, Shishang Guo, Xing-zhong Zhao*, A composite nanostructured electron-transport layer for stable hole-conductor free perovskite solar cells: design and characterization. Nanoscale, 8, 11, 5847-5851, 2016.
9. Zhenhua Yu, Sujian You, Changlei Wang, Chenghao Bu, Sihang Bai, Ziyao Zhou, Qidong Tai, Wei Liu, Shishang Guo, Xing-zhong Zhao*, Efficient dye-sensitized solar cells employing highly environmentally-friendly ubiquinone 10 based I 2-free electrolyte inspired by photosynthesis, Journal of Materials Chemistry A, 2, 24, 9007-9010, 2014.
10. Shuang Yang, Shangshang Chen, Edoardo Mosconi, Yanjun Fang, Xun Xiao, Congcong Wang, Yu Zhou, Zhenhua Yu, Jingjing Zhao, Yongli Gao, Filippo De Angelis, Jinsong Huang*, Stabilizing halide perovskite surfaces for solar cell operation with wide-bandgap lead oxysalts, Science, 365, 6452, 473-478, 2019.
11. Zhibin Yang, Zhenhua Yu, Haotong Wei, Xun Xiao, Zhenyi Ni, Bo Chen, Yehao Deng, Severin N Habisreutinger, Xihan Chen, Kang Wang, Jingjing Zhao, Peter N Rudd, Joseph J Berry, Matthew C Beard, Jinsong Huang*, Enhancing electron diffusion length in narrow-bandgap perovskites for efficient monolithic perovskite tandem solar cells, Nature communications, 10, 1, 1-9, 2019.
12. Xiang Zhang, Zhenhua Yu, Dan Zhang, Qidong Tai*, Xing‐Zhong Zhao*, Recent Progress of Carbon‐Based Inorganic Perovskite Solar Cells: From Efficiency to Stability, Advanced Energy Materials, DOI: 10.1002/aenm.202201320, 2022.
13. Guang Yang, Zhenyi Ni, Zhengshan J Yu, Bryon W Larson, Zhenhua Yu, Bo Chen, Abdulwahab Alasfour, Xun Xiao, Joseph M Luther, Zachary C Holman, Jinsong Huang*, Defect engineering in wide-bandgap perovskites for efficient perovskite–silicon tandem solar cells, Nature Photonics, 16, 588–594, 2022.
14. Zhenyi Ni, Haoyang Jiao, Chengbin Fei, Hangyu Gu, Shuang Xu, Zhenhua Yu, Guang Yang, Yehao Deng, Qi Jiang, Ye Liu, Yanfa Yan, Jinsong Huang*, Evolution of defects during the degradation of metal halide perovskite solar cells under reverse bias and illumination, Nature Energy, 7, 1, 65-73, 2022.
15. Xuezeng Dai, Shangshang Chen, Haoyang Jiao, Liang Zhao, Ke Wang, Zhenyi Ni, Zhenhua Yu, Bo Chen, Yongli Gao, Jinsong Huang*, Efficient monolithic all-perovskite tandem solar modules with small cell-to-module derate, Nature Energy, 2022, https://doi.org/10.1038/s41560-022-01102-w.
16. Shangshang Chen, Yehao Deng, Hangyu Gu, Shuang Xu, Shen Wang, Zhenhua Yu, Volker Blum, Jinsong Huang*, Trapping lead in perovskite solar modules with abundant and low-cost cation-exchange resins, Nature Energy, 5, 12, 1003-1011, 2020.
17. Yuze Lin, Bo Chen, Yanjun Fang, Jingjing Zhao, Chunxiong Bao, Zhenhua Yu, Yehao Deng, Peter N Rudd, Yanfa Yan, Yongbo Yuan, Jinsong Huang*, A composite nanostructured electron-transport layer for stable hole-conductor free perovskite solar cells: design and characterization, Nature communications, 9, 1, 1-9, 2018.
18. Jingjing Zhao, Yehao Deng, Haotong Wei, Xiaopeng Zheng, Zhenhua Yu, Yuchuan Shao, Jeffrey E Shield, Jinsong Huang*, Strained hybrid perovskite thin films and their impact on the intrinsic stability of perovskite solar cells, Science Advances, 8, 11, eaao5616, 2017.
