陈桂林,教授,博士生导师,中国科学技术大学工学博士,入选“宝琛计划”高层次人才和福建省高层次人才(C类)等计划。长期从事新型薄膜太阳电池的开发与设计研究,相关成果以第一或通讯作者发表于Nano Energy、Adv. Funct. Mater.、Adv. Sci.等SCI刊物70余篇,获批发明专利7项(第一发明人);主持国家自然科学基金面上(2项)和青年项目、福建省自然科学基金对外合作、青年创新和福建省高校杰出青年科研人才培育计划等多项课题。
研究领域
1. 铜铟镓硒薄膜太阳电池;
2. 新型无机薄膜太阳电池:硒硫化锑、铜锌锡硫硒、和硒化亚锗等化合物薄膜太阳电池;
3. 新型光电薄膜的沉积及应用。
招生专业
博士招生专业:
凝聚态物理
硕士招生专业:
1. 070205凝聚态物理;
2. 0702Z1能源与材料物理;
3. 085807清洁能源技术。
近年代表论文
[1] L.Q. Yao, M.H. Lai, L.M. Lin, D. Wei, Z.G. Huang, S.Y. Chen, G.L. Chen*, Cation Exchange-assisted hot injection for PbSe nanocrystalline structures anchored to Sb2S3: Constructing a deeply buried back interface for highly efficient solar cells, ACS Photonics 2024, 11, 2805-2814.
[2] J.R. Cai, Z.H. Huang, W.Q. Huang, L.J. Liu, H. Li, L.M. Lin, Y.L. Zhan, Y.S. Xia, S.Y. Chen, G.L. Chen*, Oxygen-assisted tailoring of evaporated PbS hole transport layer for highly efficient antimony sulfide solar cells, Small 2024, 2407246.
[3] L.Q. Yao, L.M. Lin, Z.P. Huang, Y. Mao, H. Li, W.W. Lin, S.Y. Chen, Z.G. Huang, J.M. Li, G.L. Chen*, A liquid medium annealing strategy for highly [041]/[141]-oriented planar antimony sulfide solar cells with 7.23% efficiency, Nano Energy 2023, 106, 108064.
[4] H. Li, G.Q. Yang, X.Y. Hu, Y.H. Hu, R.B. Zeng, J.R. Cai, L.Q. Yao, L.M. Lin, L.P. Cai, G.L. Chen*, Sputtering of molybdenum as a promising back electrode candidate for superstrate structured Sb2S3 solar cells, Adv. Sci. 2023, 10, 2198-3844.
[5] P. Tang, Z.H. Huang, Y.X. Chen, H. Li, L.Q. Yao, H. Li, L.M. Lin, J.R. Cai, Y.L. Zhan, D. Wei, S.Y. Chen, D.Q. Chen, G.L. Chen*, Spatial bandgap tailoring via a novel injection chemical bath deposition enables highly efficient carbon-based Sb2(S,Se)3 thin film solar cells, Chem. Eng. J. 2023, 47, 1385-8947.
[6] Y. Mao, Y.H. Hu, X.Y. Hu, L.Q. Yao, H. Li, L.M. Lin, P. Tang, H. Li, S.Y. Chen, J.M. Li, G.L. Chen*, Molten salts assisted interfacial engineering for efficient and low-cost full-inorganic antimony sulfide solar cells, Adv. Funct. Mater. 2022, 32, 2208409.
[7] F.Y. Wu, Y.Q. Zhao, L.Q. Yao, H. Li, Z.P. Huang, L.M. Lin*, Y.P. Ma, S.Y. Chen, J.M. Li*, G.L. Chen*, Manipulating back contact enables over 8%-efficient carbon-based Sb2(S,Se)3 solar cells, Chem. Eng. J. 2022, 440, 135872.
[8] Y. Mao, L. Huang, W.G. Zeng, F.Y. Wu, L.Q. Yao, L.M. Lin, J.M. Zhang*, J.M. Li*, G.L. Chen*, Bi doping of Sb2S3 light-harvesting films: Toward suitable energy level alignment and broad absorption for solar cells, Chem. Eng. J. 2022, 446, 137400.
[9] H. Li, L.M. Lin, L.Q. Yao, F.Y. Wu, D. Wei, G.L. Liu, Z.G. Huang, S.Y. Chen*, J.M. Li*, G.L. Chen*, High-efficiency Sb2(S,Se)3 solar cells with new hole transport layer-free back architecture via 2D titanium-carbide MXene, Adv. Funct. Mater. 2021, 32, 2110335.
[10] M. Yang, X.J. Huang, L.Q. Yao, L.M. Lin, A.C. Chen*, Y.Q. Chen, Y.L. Che, S.Y. Chen, X.K. Kong*, G.L. Chen*, Self-stabilizing molecular solution for Cu2SnS3 thin film: An insight into the oxidation inhibitor of bivalent tin ion, J. Power. Sources 2021, 494, 229699.
[11] W.W. Lin, W.T. Guo, L.Q. Yao, J.M. Li*, L.M. Lin, J.M. Zhang*, S.Y. Chen, G.L. Chen*, Zn(O,S) buffer layer for in situ hydrothermal Sb2S3 planar solar cells, ACS Appl. Mater. Inter. 2021, 13, 45726-45735.
[12] F.Y. Wu, H. Li, L.Q. Yao, W.W. Lin, L.M. Lin, W.J. Chen, D. Wei*, S.L. Liu, S.Y. Chen*, G.L. Chen*, In-situ hydrothermal growth of MoS2 absorber layer for planar heterojunction solar cells, Sol. Energy 2021, 230, 754-763.
[13] L.Q. Yao, L.M. Lin, H. Liu, F.Y. Wu, J.M. Li*, S.Y. Chen, Z.G. Huang, G.L. Chen*, Front and back contact engineering for high-efficient and low-cost hydrothermal derived Sb2(S,Se)3 solar cells by using FTO/SnO2 and carbon, J. Mater. Sci. Technol. 2020, 58, 130-137.
[14] W.H. Wang, X.M. Wang, G.L. Chen*, L.Q. Yao, X.J. Huang, T. Chen*, C.F. Zhu, S.Y. Chen, Z.G. Huang, Y. Zhang*, Over 6% certified Sb2(S,Se)3 solar cells fabricated via in situ hydrothermal growth and postselenization, Adv. Electron. Mater. 2019, 5, 1800683.
[15] B.W. Chen, Y.R. Ruan, J.M. Li*, W.H. Wang, X.L. Liu, H.L. Cai, L.Q. Yao, J.M. Zhang*, S.Y. Chen, G.L. Chen*, Highly oriented GeSe thin film: self-assembly growth via the sandwiching post-annealing treatment and its solar cell performance, Nanoscale 2019, 11, 3968.
[16] W.H. Wang, X.M. Wang, G.L. Chen*, B.W. Chen, H.L. Cai, T. Chen*, S.Y. Chen, Z.G. Huang, C.F. Zhu, Y. Zhang*, Promising Sb2(S,Se)3 solar cells with high open voltage by application of a TiO2/CdS double buffer layer, Sol. RRL 2018, 1800208.
科研项目
主持国家自然科学基金面上项目(62475044;61974028)、国家自然科学基金青年项目(51502037),福建省高校杰出青年科研人才培育计划(J1-1264)、福建省自然科学基金对外合作项目(2023I0012)和青年项目(2015J05096)等。
授权发明专利
[1] 陈桂林;李虎;林丽梅;黄志高,一种气固反应制备太阳能电池吸收层四硫化锑三铜薄膜的方法,中国发明专利,专利号:ZL 2020 1 1328649.8。
[2] 陈桂林;姚丽铨;陈水源;黄志高,一种液相硒化制备硒硫化锑薄膜的方法,中国发明专利,专利号:ZL 2021 1 0843501.6。
[3] 陈桂林;蔡慧玲;陈水源;黄志高,一种空气中硫化退火制备铜锌锡硫薄膜的方法,中国发明专利,授权号:ZL 2019 1 0064971.5。
[4] 陈桂林;王伟煌;张碧云;陈水源;黄志高,一种可循环化学浴法制备太阳能电池吸收层Sb2S3薄膜的方法,中国发明专利,授权号:ZL 2019 1 0064172.8。
[5] 陈桂林;王伟煌;陈水源;黄志高,具有梯度成分太阳能电池吸收层铜铟硫硒薄膜的制备方法,中国发明专利,授权号:ZL 2017 10331491.1。陈桂林;王伟煌;张碧云;陈水源;黄志高,一种可循环化学浴法制备太阳能电池吸收层Sb2S3薄膜的方法,中国发明专利,授权号:ZL 2019 1 0064172.8。
[6] 陈桂林;蔡慧玲;刀春燕;陈水源;黄志高,一种CuInS2薄膜均匀掺钠的方法,中国发明专利,授权号:ZL 2019 1 0412544.1。
[7] 陈桂林;伟煌;张碧云;陈水源;黄志高,基于磁控溅射和后硒化制备太阳能电池吸收层Sb2Se3薄膜的方法,中国发明专利,授权号:ZL201710195189.8。
联系方式
通讯地址:福建省福州市闽侯县大学城福建师范大学旗山校区科技楼18#1212(350117)
电子邮箱:glchen@fjnu.edu.cn
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