孙倩倩 副教授

院部/部门:物理与电子科学学院

电子邮箱: qianqiansun@sdnu.edu.cn     办公地点: 山东师范大学长清湖校区F431
个人简历



孙倩倩

职称:副教授

院部/部门: 物理与光电学院

最高学历: 博士研究生

最高学位: 博士

毕业学校: 北京交通大学

毕业专业:光学工程

联系方式

电子邮箱: qianqiansun@sdnu.edu.cn

办公地点: 山东师范大学长清湖校区文澜楼F431

个人简介

孙倩倩,女,1990年07出生山东聊城,博士,副教授,硕士研究生导师。2017年获北京交通大学博士学位,同年入职山东师范大学物理与光电学院。从事有机光伏方面的研究工作,在等本领域主流期刊上发表SCI论文50余篇。主持国家自然学基金青年项目、国家自然科学基金理论专项项目、山东省自然学基金青年项目国家博士后科学基金面上项目各1项目。担任Energies、Materials、Nanomaterials及Polymers期刊的主题编辑。获授权国家发明专利3项指导硕士研究生10人已毕业4人指导20余名本科生参加本科生科研基金项目。指导本科生发表第一作者SCI论文1篇,发表参与SCI论文5篇。指导本科生荣获国家级项目1项、省部级项目1项、校级项目8项、省赛银奖2项、省赛奖1项、省赛一等奖3项、省赛二等奖3项、省赛三等奖4项,校赛特等奖1项,校赛银奖1项,指导本科毕业论文41篇。承担的本科生课程《热学》2021年获批山东省一流本科课程,2022年山东省普通高等学校教师教学创新大赛一等奖,2022年国家普通高等学校教师教学创新大赛三等奖,2025年获国家级一流本科生课程

招生方向

物理学(凝聚态)

研究方向

有机光电材料与器件

主持科研项目

1.山东省自然科学基金青年项目,2025.01-2027.12

2.国家自然科学基金青年项目,2022.01-2024.12

3.国家自然科学基金专项项目,2021.01-2021.12

4.国家博士后科学基金面上项目,2018.01-2020.12

5.山东师范大学青年科技项目培育基金项目,2018.01-2019.12

论文成果

发表SCI论文50余篇,详情见https://orcid.org/0000-0002-6204-168X其中以第一作者或通讯作者身份发表的工作如下:

1.Chao Zhang, Tengfei Han, Lijuan Wei, Jie Chi, Ran Dong, ShuLin Han, Hang Zhou, Jinjuan Gao, Yujie Xu, Lei Cai, Xiaoyan Du, Jian Wang*, Fujun Zhang* and Qianqian Sun*, Exceeding 20.2% efficiency in pseudo-planar heterojunction organic solar cells enabled by high-crystallinity L8-BO-C4-induced morphology optimization, Adv. Funct. Mater., 2026, DOI:10.1002/adfm.75600. (IF = 19.0)

2.Jie Chi, Tengfei Han, Ran Dong, Shulin Han, Lei Cai, Hang Zhou, Jian Wang*, Fujun Zhang*, Qianqian Sun*, Constructing ternary double bulk heterojunction organic solar cells via layer-by-layer deposition method, J. Mater. Chem. A, 2026, DOl: 10.1039/d5ta10542k. (IF = 9.5)

3.Chao Zhang, Shixiu Sun, Tengfei Han, Jie Chi, Ran Dong, Shulin Han, Hang Zhou, Yujie Xu, Lei Cai, Xiaoyan Du, Sang Young Jeong, Han Young Woo, Fujun Zhang*, Qianqian Sun*, Superior charge dynamics via ternary doping layer-by-layer strategy in high-efffciency organic solar cells, Chem. Eng. J., 2025, 522, 167959 (IF = 13.2)

4.Ran Dong, Jie Chi, Tengfei Han, ShuLin Han, Hang Zhou, Lei Cai, Fujun Zhang, Yingying Ren*, and Qianqian Sun*, High-efficiency ternary layer-by-layer all-polymer solar cells enabled by a dual-donor alloy strategy, Appl. Phys. Lett., 2025, 127, 093902. (IF = 3.6)

5.Tengfei Han, Jie Chi, Ran Dong, ShuLin Han, Hang Zhou, Yujie Xu, Byung Hui Lee, Lei Cai, Xiaoyan Du, Han Young Woo, Fujun Zhang*, Chao Zhang*, Qianqian Sun*, Crystallization-driven effect enables organic solar cells with efffciency exceeding 19.4 %, Chem. Eng. J., 2025, 516, 164137. (IF = 13.2)

6.Zijian Zhang, Yu Zhang, Shixiu Sun, Hang Zhou, Jian Wang*, Yujie Xu, Xiaoyan Du, Sang Young Jeong, Han Young Woo, Fujun Zhang* and Qianqian Sun*, Over 18.7% efficiency for bulk heterojunction and pseudo-planar heterojunction organic solar cells achieved by regulating intermolecular compatibility, J. Mater. Chem. A, 2024, 12, 24622. (IF = 9.5)

7.Shixiu Sun, Cuilin Tan, Zijian Zhang, Hang Zhou, Wenjing Xu, Yujie Xu, Xiaoyan Du, Sang Young Jeong, Han Young Woo, Fujun Zhang,* Chao Zhang,* and Qianqian Sun*, Highly efficient organic solar cells with the highly crystalline third component as a morphology regulator, Small, 2024, 2404734. (IF = 12.1)

8.Zijian Zhang, Yu Zhang, Shixiu Sun, Hang Zhou, Jian Wang*, Yujie Xu, Xiaoyan Du, Sang Young Jeong, Han Young Woo, Fujun Zhang*, and Qianqian Sun*, Over 18.7% efficiency for bulk heterojunction and pseudo-planar heterojunction organic solar cells achieved by regulating intermolecular compatibility, J. Mater. Chem. A, 2024, 12, 24622-24632. (IF = 9.5)

9.Hang Zhou, Chunxiang Liu, Shaofei Liu, Zijian Zhang, Shixiu Sun, Wenjing Xu, Xiaoling Ma, Jian Wang*, Yujie Xu, Xiaoyan Du, Sang Young Jeong, Han Young Woo, Fujun Zhang*, and Qianqian Sun*, PC71BM as morphology regulator for highly efficient ternary organic solar cells with bulk heterojunction or Layer-by-Layer configuration, Small, 2023, 2308216. (IF = 12.1)

10.Wenjing Xu, Xixiang Zhu, Xiaoling Ma*, Hang Zhou, Xiong Li, Sang Young Jeong, Han Young Woo, Zhengji Zhou*, Qianqian Sun*, Fujun Zhang*, Achieving 15.81% and 15.29% efficiency of all polymer solar cells based on layer-by-layer and bulk heterojunction structures, J. Mater. Chem. A, 2022, 10, 13492-13499. (IF = 9.5)

11.Chunxiang Liu, Hang Zhou, Yujie Xu, Wenjing Xu, Jiaxin Zhou, Tongshu Zhang, Xiaoling Ma, Jian Wang*, Fujun Zhang*, Qianqian Sun*, Highly efficient inverted organic solar cells with natural biomaterial histidine as electron transport layer, Org. Electron., 2022, 106, 106538. (IF = 2.6)

12.Qianqian Sun*, Yujie Xu, Zhicheng Gao, Hang Zhou, Qian Zhang, Ruichong Xu, Chao Zhang, Haizi Yao*, Mei Liu*, High-performance surface-enhanced Raman scattering substrates based on the ZnO/Ag core-satellite nanostructures, Nanomaterials, 2022, 12, 1286. (IF = 4.3)

13.Yujie Xu, Hang Zhou, Pengyi Duan, Baojie Shan, Wenjing Xu, Jian Wang, Mei Liu,* Fujun Zhang*, Qianqian Sun*, Improving the efficiency of organic solar cells with methionine as electron transport layer, Molecules, 2022, 27, 6363. (IF = 4.6)

14.Mei Liu#, Yujie Xu#, Zhicheng Gao, Chao Zhang, Jing Yu, Jian Wang*, Xiaoling Ma, Haixia Hu, Hang Yin, Fujun Zhang*, Baoyuan Man, Qianqian Sun*, Natural biomaterial sarcosine as an interfacial layer enables inverted organic solar cells to exhibit over 16.4% efficiency, Nanoscale, 2021, 13, 11128-11137. (IF = 5.1)

15.Xuelin Wang#, Qianqian Sun#, Jinhua Gao, Xiaoling Ma, Jae Hoon Son, Sang Young Jeong, Zhenghao Hu, Lianbin Niu*, Han Young Woo*, Jian Zhang, Fujun Zhang*, Ternary organic photovoltaic cells exhibiting 17.59% efficiency with two compatible Y6 derivations as acceptor, Sol. RRL, 2021, 5, 2100007. (IF = 4.7)

16.Yaning Zhou#(本科生), Haizi Yao#, Chundong Liu, Mengyu Chen, Chao Zhang, Mei Liu, Jian Wang, Fujun zhang*, Jing Yu*, Baoyuan Man, Qianqian Sun*, High-performance flexible surface-enhanced Raman scattering substrate based on the particle-in-multiscale 3D structure, Nanophotonics, 2021, 10, 4045-4055. (IF = 6.6)

17.Yue Wang#, Chunyu Xu#, Chong Wang, Yutong Yan, Qianqian Sun*, Xiaoling Ma*, Fujun Zhang*, Ternary-organic photovoltaics with J71 as donor and two compatible non-fullerene acceptors, J. Polym. Sci., 2021, 59, 1-7. (IF = 3.6)

18.Qianqian Sun, Fujun Zhang*, Qiaoshi An, Miao Zhang, Xiaoling Ma, Jian Zhang*, Simultaneously enhanced efficiency and stability of polymer solar cells by employing solvent additive and upside-down drying method, ACS Appl. Mater. Interfaces, 2017, 9, 8863-8871. (IF = 8.2)

19.Qianqian Sun, Fujun Zhang*, Qiaoshi An, Miao Zhang, Jian Wang, Jian Zhang*, Highly efficient polymer solar cells by step-by-step optimizing donor molecular packing and acceptor redistribution, Phys. Chem. Chem. Phys., 2017, 19, 709-716. (IF = 2.9)

20.Xue Zhou#, Qianqian Sun#, Wei Li, Yuan Zhao, Zhenghui Luo, Fujun Zhang*, Chuluo Yang*, Isomeric small molecule acceptors based on perylene diimide and spirobifluorene for non-fullerene organic solar cells, Dyes Pigments, 2017,146, 151-158. (IF = 4.2)

21.Qianqian Sun, Fujun Zhang*, Jian Wang, Qiaoshi An, Chen Zhao, Lingliang Li, Feng Teng, Bin Hu, A two-step strategy to clarify the roles of a solution processed PFN interfacial layer in highly efficient polymer solar cells, J. Mater. Chem. A, 2015, 3, 18432-18441. (IF = 9.5)

22.Qianqian Sun, Fujun Zhang*, Qiaoshi An, Lingliang Li, Jian Wang, Miao Zhang, Wenbin Wang, Feng Teng*, Jian Zhang, Revealing the effect of donor/acceptor intermolecular arrangement on organic solar cells performance based on two-dimensional conjugated small molecule as electron donor, Org. Electron., 2015, 24, 30-36. (IF = 2.6)

23.Qianqian Sun, Fujun Zhang*, Jiefeng Hai, Jiangsheng Yu, Hui Huang, Feng Teng*, Weihua Tang*, Doping a D-A structural polymer based on benzodithiophene and triazoloquinoxaline for efficiency improvement of ternary solar cells, Electron. Mater. Lett., 2015, 11, 236-240. (IF = 2.6)

24.Qianqian Sun, Qiaoshi An, Fujun Zhang*, A simple encapsulation method for organic optoelectronic devices, Chinese Phys. B, 2014, 23, 083302. (IF = 1.5)

荣誉奖励

1.2025年获批第三批国家级一流本科课程——热学(4/5

2.2025年获批山东师范大学大学生创新创业训练计划项目——指导教师

3.2024年获批山东师范大学本科生科研基金项目——指导教师(1/2

4.2024年获批山东师范大学大学生创新创业训练计划项目——指导教师(1/2

5.2024年获“建行杯”山东省大学生创新大赛银奖——指导教师(2/6

6.2024年获第十四届“挑战杯”山东省大学生创业计划竞赛铜奖——指导教师(2/3

7.2024年获批授权发明专利1项“一种阴极界面修饰层及其应用”(1/6

8.2024年获批授权发明专利1项“一种柔性半透明表面增强拉曼基底的制备方法及应用”(1/6

9.2023年山东师范大学第一届大学生创新创业大赛特等奖1项——指导教师(2/3

10.2023年获山东省大学生物理创新竞赛大赛省级一等奖1项——指导教师

11.2023年获第六届山东省大学生光电设计科技创新大赛省级二等奖1项——指导教师

12.2023年获批山东师范大学本科生科研基金立项项目1项——指导教师

13.2023年获批山东师范大学大学生创新创业训练计划项目1项——指导教师

14.2022年获批授权发明专利1项“Y6在光限幅中的应用”(2/6

15.2022年获批山东师范大学大学生创新创业训练计划项目1项——指导教师

16.2022年获山东省大学生物理竞赛省级一等奖1项、二等奖1项、三等奖2项——指导教师

17.2022年获国家普通高等学校教师教学创新大赛三等奖-热学(3/4

18.2022年获山东省普通高等学校教师教学创新大赛一等奖-热学(3/4

19.2022年获山东师范大学教师教学创新大赛三等奖-热学(1/4

20.2021年获批山东省一流本科课程-热学(4/5

21.2021年获山东省互联网+大学生创新创业大赛加省级银奖——指导教师(1/2

22.2021年获山东师范大学互联网+大学生创新创业大赛校级银奖——指导教师(1/2

23.2021年获批山东师范大学大学生创新创业训练计划项目2项——指导教师

24.2021年获山东省大学生物理竞赛省级一等奖、二等奖、三等奖各1项——指导教师

25.2020年获山东师范大学物电学院教学能手

26.2020年获批国家级大学生创新创业训练计划项目1项——指导教师

27.2020年获批省部级大学生创新创业训练计划项目1项——指导教师

28.2020年获山东省大学生物理竞赛省级一等奖、二等奖、三等奖各1项——指导教师

29.2019年获山东省高等学校科学技术奖三等奖(5/5