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罗派峰

领域:新材料产业 学校:合肥工业大学职称:教授

1、太阳能电池及光伏应用:1)钙钛矿电池;2)CIGS薄膜电池;3)高效晶硅电池;4)光伏应用技术。2、光电材料与器件:1)CSI新型光电材料;2)量子点QLED;3)钙钛矿PeLED。
3、无机功能材料:1)磷石膏水泥缓凝剂;2)水泥混凝土添加剂;3)绿色建材产品开发;4)无机功能薄膜及涂层。
4、主讲《无机非金属材料工艺学》、《特种水泥》、《薄膜科学与技术》等本科及研究生课程。

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具体了解该专家信息,请致电:027-87555799 邮箱 haizhi@uipplus.com

教育背景

工作经历

项目课题经历

1)国家自然科学基金面上项目,2018-2021,主持。

2国家自然科学基金大科学装置联合基金,2016-2018主持。

3)国家自然科学青年基金,2014-2016主持。

4)十三五装备预研国防科技重点实验室基金,2018-2019,主持。

5)安徽省自然科学基金面上项目2015-2017主持。

6)校应用成果培育项目,2016-2017,主持。

7)安徽省教育厅产学研重点项目,主持。

8)江苏省双创博士计划人才项目,主持。

9)日本板硝子国际交流项目,主持。

10中科院能量转换实验室开放基金博士基金、校基金及企业横向项目等主持

参与中科院新型太阳电池重大知识创新项目、杭州市重大科技攻关项目、国家自然科学基金、新世纪及校创新团队项目等。


论文、成果、著作等

1. Paifeng Luo*, Yugang Zhou, Shengwen Zhou, et al., Fast Anion-Exchange from CsPbI3 to CsPbBr3 via Br2-Vapor-Assisted Deposition for Air-Stable All-Inorganic Perovskite Solar Cells, Chemical Engineering Journal, 2018, 343: 146-154. (IF=6.7)

2. Paifeng Luo*, Shengwen Zhou, Yugang Zhou, et al., Fabrication of CsxFA1-xPbI3 Mixed-Cation Perovskites via Gas-Phase-Assisted Compositional Modulation for Efficient and Stable Photovoltaic Devices, ACS Applied Materials & Interfaces, 2017, 9: 42708-42716. (IF=8.1)

3. Paifeng Luo*, Wei Xia, Shengwen Zhou, Lin Sun, Jigui Cheng, Chenxi Xu, Yingwei Lu, Solvent Engineering for Ambient-Air-Processed,Phase-Stable CsPbI3 in Perovskite Solar Cells, Journal of Physical Chemistry Letters, 2016, 73603-3608. (IF=8.7,引用75)

4. Paifeng Luo*, Shengwen Zhou, Zhaofan Liu, et al., A Novel Transformation Route from PbS to CH3NH3PbI3 for Fabricating Curved and Large-Area Perovskite Films, Chemical Communications, 2016, 5211203. (IF=6.3,封底论文)

5. Zhaofan Liu,Paifeng Luo*, Wei Xia, et al.,Acceleration Effect of Chlorine in the Gas-Phase Growth Process of CH3NH3PbI3(Cl) Films for Efficient Perovskite Solar Cells, Journal of Materials Chemistry C, 2016, 46336-6344.(IF=6.0)

6. Paifeng Luo*, Zhaofan Liu, Wei Xia, et al.,Uniform, Stable, and Efficient Planar-Heterojunction Perovskite Solar Cells by Facile Low-Pressure Chemical Vapor Deposition under Fully Open-Air Conditions, ACS Applied Materials & Interfaces, 2015, 7: 2708-2714. (IF=8.1ESI高引,引用88)

7. Paifeng Luo*, Zhaofan Liu, Wei Xia, et al.,Chlorine-Conducted Defect Repairment and Seed Crystal-Mediated Vapor Growth Process for Controllable Preparation of Efficient and Stable Perovskite Solar Cells, Journal of Materials Chemistry A, 2015, 3: 22949-22959. (IF=9.9)

8. Paifeng Luo*, Zhaofan Liu, Wei Xia, et al.,A Simple in situ Tubular Chemical Vapor Deposition Processing of Large-Scale Efficient Perovskite Solar Cells and the Research on its Novel Roll-Over Phenomenon in J-V Curve, Journal of Materials Chemistry A, 2015, 3: 12443-12451. (IF=9.9)

9. Paifeng Luo*, Zhaofan Liu, Yuankui Ding, et al.,A Novel Non-Vacuum Process for the Preparation of CuIn(Se,S)2 Thin-Film Solar Cells from Air-Stable, Eco-Friendly, Metal Salts Based Solution Ink,Journal of Power Sources, 2015, 274: 22-28. (IF=6.9)

10. Paifeng Luo*, Yugang Zhou, Shengwen Zhou, et al., Colorful, bandgap-tunable, and air-stable CsPb(IxBr1-x)3 inorganic perovskite films via a novel sequential chemical vapor deposition, Ceramics International, 2018, 4412783-12788. (IF=3.1)

11. Paifeng Luo*, Shengwen Zhou, Wei Xia, et al., Chemical Vapor Deposition of Perovskites for Photovoltaic Application, Advanced Materials Interfaces, 2017, 4: 1600970. (IF=4.8,评论文章)

12. Juntao Hu*, Yang Huang, Qianpeng Zhu, Yuhan Lin, Kai Xu, Fei Ding*, Paifeng Luo*, Enhanced performance of CdSe/ZnS quantum dot light-emitting diodes with organic small molecule mCP-modified emitting layers, Journal of Nanoelectronics and Optoelectronics, Accepted.

13.  Bin Li, Han-Han Wu, Pai-Feng Luo, et al., Ying-Wei Lu*, Size-Dependent Plasmonic Mode Evolution and SERS Performance of β-Sn Nanoparticles, Journal of Physical Chemistry C, 2019, 123: 735738. (IF=4.5)

14. Zhaofan Liu, Wei Xia, Chenchen Yuan, Paifeng Luo*, Preparation of Cu(In,Al)(Se,S)2 Thin Films by Low-Cost Non-vacuum Hybrid Process, Chinese Journal of Chemical Physics, 2015, 28: 746-750.

15. Paifeng Luo*, Yuankui Ding, Zhaofan Liu, et al.,The Preparation of CuInSe2 Films by Direct Selenization of CuIn Oxides Precursors, Journal of Optoelectronics and Advanced Materials, 2014, 16: 317-321.

16. Li Zhou, Yuankui Ding, Paifeng Luo*, The Preparation of High Quality CIS Films by Spraying Citrate-Capped Cu11In9 Alloy Nanoparticles Ink and RTP Process, Advanced Materials Research, 2013, 787: 382-387.

17. Yuhang Ren*, Paifeng Luo, Bo Gao, Zehra Cevher, Fabrication of chalcopyrite light-absorbing layers based on nanoparticle and nanowire networks, APS March Meeting 2013, March 18-22, 2013, 58(1), Baltimore, Maryland, 2013, H1.00319.

18. P. F. Luo*, P. H. Yu, R. Z. Zuo, et al., The Preparation of Cu(In,Al)S2 Films by Directly Reduction and Sulfuration of the Oxide Precursors, Scripta Materialia, 2011, 64: 422-425. (IF=4.2)

19. Paifeng Luo*, Ruzhong Zuo, Litao Chen, The Preparation of CuInSe2 Films by Combustion Method and Spin-Coating Process, Solar Energy Materials and Solar Cells, 2010, 94: 1146-1151. (IF=5.0)

20. Paifeng Luo*, Penghan Yu, Ruzhong Zuo, et al., The Preparation of CuInSe2 Films by Solvothermal Route and Non-Vacuum Spin-Coating Process, Physica B: Condensed Matter, 2010, 405: 3294-3298.

21. Paifeng Luo, Jiang Guoshun, Zhu Changfei*, Pulsed Laser Deposition ZnS Buffer Layers for CIGS Solar Cells, Chinese Journal of Chemical Physics, 2009, 22: 97-101.

22. Paifeng Luo, Changfei Zhu*, Guoshun Jiang, Preparation of CuInSe2 Thin Films by Pulsed Laser Deposition Using Cu-In Alloy Precursor and Vacuum Selenization, Solid State Communications, 2008, 146: 57-60.

23. 

专利、著作版权等

开发出钙钛矿电池CVD气相沉积工艺技术,获专利授权,相关研究入选ESI高引论文;开发出钙钛矿叠层电池,研制出近20%高效光伏器件;制备出高效稳定的无机钙钛矿电池。

开发出CIGS纳米材料及墨水制备工艺,研制出高效柔性CIGS薄膜电池曾担任公司技术总监,研发出超声喷印工业化技术研制出等离子辅助PECVD硒化设备,设计出100MW大型CIGS电池生产线与企业合作开发高效晶硅太阳电池、磷石膏水泥缓凝剂、Low-E低辐射玻璃等产品,取得较好经济社会效益。目前已主持及参与科研项目20余项,在JPCLJMCAACS appl. Mat. Inter.CCJ. Power SourcesChem. Eng. J.JMCCSol. Energ. Mat. Sol. C.等发表论文40篇;申请发明专利21项,授权15项,含2项授权美国专利;参编教材3

授权发明专利如下:

1Method of foming an I-III-VI2 compound semiconductor thin film of chalcopyrite structure, US8632851 B1。(美国)

2Preparation of CIGS absorber layers using coated semiconductor nanoparticle and nanowire networksUS9105798 B2。(美国)

3一种CsPbI3薄膜的溶液制备方法及其光伏器件的应用ZL201610537533.2

4一种Cs2SnI6薄膜的激光脉冲沉积制备方法,ZL20161053750.7

5一种适于各种衬底形状的钙钛矿薄膜大面积制备方法,ZL201610207716.8

6)一种钙钛矿太阳能电池的化学气相沉积制备方法,ZL201410586978.0

7)一种CIGS薄膜电池的激光沉积制备工艺,ZL201310030323.0

8)一种搅拌球磨处理CuInGa粉体的方法ZL201310212222.5

9)一种磷石膏水泥缓凝剂,ZL201410382973.6

10)一种制备铜铟镓硒薄膜的等离子体协助硒化工艺及装置,ZL201110406154.7

11)一种太阳能电池光吸收层材料CIGS薄膜的制备方法,ZL201010246615.4

12)二元硒化物纳米粉体的高能振动球磨工艺,ZL201310212086.X

13)基于球磨工艺的非晶态CIGS纳米粉体的制备方法,ZL201310287806.9

14)铜铟镓硒CIGS薄膜太阳电池生产过程中产生的CdS废液回收利用方法,ZL201210378807.X

15)制备CIS薄膜及器件的非真空液相化学法合成方法,ZL200910152060.4


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