Faculty
SU Wenming / 苏文明
  • Department:Division of Nano-devices & Materials
  • Position:professor
  • Expertise:Printable electronics; Thin film encapsulation; QLED/ ECD; metal mesh
  • Email:wmsu2008@sinano.ac.cn
Research Interest

1. Printable & flexible electronics;

2. Ink-jet printing QLED devices and cross-linkable materials;

3. Printable organic electrochromic materials and devices ;

4. Printed metal mesh CTF and its applications.

Experience:

Employment

Jan. 2019- Present

Professor

PERC / Division of Nano-devices,SINANO, CAS

Jan. 2011-Dec. 2018

Associate Professor

Printable Electronics Research Center, SINANO, CAS

Feb. 2008 - Dec. 2010

Assistant Professor 

Nanobiomedicine Division, SINANO, CAS

Jun. 2007 -Jan. 2008

Lecturer

College of Physical Science and Technology, Yangzhou University


Education

Ph.D. 2007

Condensed Matter Physics

Key Laboratory of Excited State Processes, CIOMP, CAS

B.S. 2001

Chemistry Education

Zhanjiang Normal College


Selected Publication:

1. Chenchao Huang, Zishou Hu, Yuan-Qiu-Qiang Yi, Xiaolian Chen, Xinzhou Wu,* Wenming Su * and Zheng Cui , High performance printed organic electrochromic devices based on an optimized UV curable solidstate electrolyte, Nanoscale, 2022, 14, 14122

2. Liming Xie, Jian Yang, Wenchao Zhao, Yuan-Qiu-Qiang Yi,* Yang Liu, Wenming Su,*Qing Li,* Wei Lei, and Zheng Cui, High-Performance Inkjet-Printed Blue QLED Enabled by Crosslinked and Intertwined Hole Transport Layer, Adv. Optical Mater. 2022, 2200935(1-9).

3. Yuan-Qiu-Qiang Yi Dawei QiHonghui WeiLiming XieYiyao ChenJian YangZishou HuYang LiuXiuqing MengWenming Su* and Zheng CuiMolecular Design of Diazo Compound for Carbene-Mediated Cross-Linking of Hole-Transport Polymer in QLED with Reduced Energy Barrier and Improved Charge Balance. ACS Appl. Mater. Interfaces 2022, 14 (34), 39149-39158.

4. Yuan-Qiu-Qiang Yi*, Jian Yang, Liming Xie, Yang Liu, Wenming Su*, Zheng Cui, Linear Cross-linkers Enabling Photothermally Cured Hole Transport Layer for High-performance Quantum Dots Light-emitting Diodes with Ultralow Efficiency Roll-off. Chem. Eng. J. 2022, 439, 135702.

5. Ming Chen, Liming Xie, Changting Wei , Yuan-Qiu-Qiang Yi , Xiaolian Chen, Jian Yang, Jinyong Zhuang, Fushan Li, Wenming Su *, and Zheng Cui, High performance inkjet-printed QLEDs with 18.3% EQE: improving interfacial contact by novel halogen-free binary solvent system, Nano Res. 2021, 14, 4125–4131.

6. Wenchao Zhao, Liming Xie, Yuan-Qiu-Qiang Yi, Xiaolian Chen, Jianfeng Hu,* Wenming Su *and Zheng Cui, Optimizing the central steric hindrance of cross-linkable hole transport materials for achieving highly efficient RGB QLEDs, Mater. Chem. Front., 2020, 4, 3368-3377.

7. Wenjian Sun, Liming Xie, Xiaojun Guo, Wenming Su, and Qing Zhang, Photocross-Linkable Hole Transport Materials for Inkjet-Printed High-Efficient Quantum Dot Light-Emitting Diodes, ACS Appl. Mater. & Inter. 2020, 12 (52), 58369-58377.

8. Pengyu Tang, Liming Xie, Xueying Xiong, Changting Wei, Wenchao Zhao, Ming Chen, Jinyong Zhuang,* Wenming Su,* and Zheng Cui, Realizing 22.3% EQE and 7‑Fold Lifetime Enhancement in QLEDs via Blending Polymer TFB and Cross-Linkable Small Molecules for a Solvent-Resistant Hole Transport Layer, ACS Appl. Mater. Inter. 2020, 14, 13087−13095.

9. Liming Xie, Xueying Xiong, Qiaowen Chang, Xiaolian Chen, Changting Wei, Xia Li, Meng Zhang, Wenming Su,* and Zheng Cui, Inkjet-Printed High-Efficiency Multilayer QLEDs Based on a Novel Crosslinkable Small-Molecule HoleTransport Material, Small 2019, 1900111(1-8).

10. Yunfei Han, Xiaolian Chen, Junfeng Wei, Guoqi Ji, Chen Wang, Wenchao Zhao, Junqi Lai,Wusong Zha, Zerui Li, Lingpeng Yan, Huiming Gu, Qun Luo,* Qi Chen, Liwei Chen, Jianhui Hou, Wenming Su,* and Chang-Qi Ma*, Efficiency above 12% for 1 cm2 Flexible Organic Solar Cells with Ag/Cu Grid Transparent Conducting Electrode, Adv. Sci. 2019, 1901490(1-11).

11. Xiaolian Chen, Shuhong Nie, Wenrui Guo, Fei Fei, Wenming Su,* Weibing Gu, and Zheng Cui, Printable High-Aspect Ratio and High-Resolution Cu Grid Flexible Transparent Conductive Film with Figure of Merit over 80000, Adv. Electron. Mater. 2019, 1800991(1-8).