酒同钢
Professor
Visit:
Personal Information:
  • Name (Pinyin):
    jiutonggang
  • E-Mail:
    tgjiu@sdu.edu.cn
  • Date of Employment:
    2020-07-06
  • School/Department:
    化学与化工学院
  • Education Level:
    With Certificate of Graduation for Doctorate Study
  • Business Address:
    青岛校区会文北楼C座228
  • Gender:
    Male
  • Degree:
    博士
  • Status:
    Employed
  • Alma Mater:
    中科院化学所
  • Supervisor of Doctorate Candidates
  • Supervisor of Master's Candidates
Biography

    酒同钢,教授,博士生导师,山东省“泰山学者”青年专家,山东大学杰出中青年学者,2001年本科毕业于兰州大学,2006 年博士毕业于中科院化学所。曾在法国原子能研究所、荷兰埃因霍温理工大学Rene Janssen教授研究组、加拿大阿尔伯塔大学Jillian Buriak教授研究组从事太阳能电池材料与器件的研究工作。2017年由中科院青岛生物能源与过程研究所引进并组建碳基能源转换材料研究组,2020年加入山东大学物质创制与能量转换科学研究中心,主要围绕石墨炔基太阳能电池方向开展研究工作。目前已在国际知名期刊如J. Am. Chem. Soc.、Adv. Mater.、Nano Lett、Nano Energy、Nano Today等发表学术论文80余篇, 主持承担了国家自然科学基金项目、山东省重大基础研究项目、中科院人才项目及国际合作项目。


邮箱:tgjiu@sdu.edu.cn

地址:山东省青岛市即墨区滨海路72号山东大学会文北楼


课题组长期招聘碳材料、有机功能材料合成、纳米材料制备与表征、太阳能电池器件等方向的博士后!





Education
  • 1997-9 — 2001-6
    兰州大学
    有机化学
    Bachelor's Degree in Science
  • 2001-9 — 2006-7
    中科院化学所
    有机化学
    Doctoral Degree in Science
Publication
Papers

1. 常艺琳. Highly Oriented and Ordered Co-Assembly Monolayers for Inverted Perovskite Solar Cells .ANGEWANDTE CHEMIE-INTERNATIONAL EDITION.2024

2. 姚瑶. Construction of Ultra-Smooth and Void-Free Buried Interface via Bilateral Chemical Bridging for Efficient and Hysteresis-Suppressed Perovskite Solar Cells .Chemical Engineering Journal.2024 (501)

3. . Construction of homogeneous electron collection center at buried interface based on triazine-based graphdiyne for efficient perovskite solar cells .NANO ENERGY.2024,131

4. 刘乐. Multi-Site Intermolecular Interaction for In?Situ Formation of Vertically Orientated 2D Passivation Layer in Highly Efficient Perovskite Solar Cells .Advanced Functional Materials.2023,33 (37)

5. 唐瑾. Interfacial Modification by Low-Temperature Anchoring Surface Uncoordinated Pb for Efficient FAPbI3 Perovskite Solar Cells .Advanced Sustainable Systems.2022,6 (5)

6. 王剑晓. Graphdiyne oxide modified nano CuO as inorganic hole transport layer for efficient and stable organic solar cells .2D Materials.2021,8 (4)

7. 刘乐. Graphdiyne oxide-accelerated charge carrier transfer and separation at the interface for efficient binary organic solar cells 氧化石墨炔提升界面电荷传输及分离以构筑高效二元有机太阳能电池器件 .SCIENCE CHINA-MATERIALS.2022

8. 王进. Growth of 2D passivation layer in FAPbI(3) perovskite solar cells for high open-circuit voltage .NANO TODAY.2022,42

9. 蔡旭. Graphdiyne oxide doping for aggregation control of hole-transport nanolayer in inverted perovskite solar cells .Nano Research.2022

10. 陈司淇. Control of the Surface Disorder by Ion-Exchange to Achieve High Open-Circuit Voltage in HC(NH2)(2)PbI3 Perovskite Solar Cell .Small Methods.2021,5 (12)

11. 王进. Growth of 1D Nanorod Perovskite for Surface Passivation in FAPbI(3) Perovskite Solar Cells .Small.2022,18 (3)

12. Yao, Lili. Graphdiyne oxide doped SnO2 electron transport layer for high performance perovskite solar cells .MATERIALS CHEMISTRY FRONTIERS.2021,5 (18):6913

13. 王进. <p>Growth of 2D passivation layer in FAPbI(3) perovskite solar cells for high open-circuit voltage</p> .NANO TODAY.2022,42

14. 陈浩. Interfacial Carrier-Transfer Channel Optimization Based on Hydrogen Bonds for High-Performance Organic Solar Cells .ACS Appl. Energy Mater. .2021,4 (4):3881

15. You, Gengshu. Tris(pentafluorophenyl)borane-Modified P3CT-K as an Efficient Hole-Transport Layer for Inverted Planar MAPbI(3) Perovskite Solar Cells .ADVANCED SUSTAINABLE SYSTEMS.2021,5 (8)

16. 唐瑾. Graphdiyne Oxide Modified NiOx for Enhanced Charge Extraction in Inverted Planar MAPbI(3) Perovskite Solar Cells .高等学校化学研究(英文版).2021,37 (6):1309

17. 刘乐. Graphdiyne oxide-accelerated charge carrier transfer and separation at the interface for efficient binary organic solar cells .SCIENCE CHINA-MATERIALS.2022

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