顾畅 中国科学院宁波材料技术与工程研究所
电子邮件: guchang@nimte.ac.cn
通信地址: 浙江省宁波市镇海区中官西路1219号
邮政编码: 315201
研究领域
光电显示材料和器件、高分辨量子点显示技术、节能电致变色材料和器件
教育背景
2018-09--2023-06 吉林大学 理学博士2014-09--2018-07 吉林大学 理学学士
工作经历
2023.7 - 2025.12 中国科学院宁波材料技术与工程研究所 博士后(助理研究员)
2026.1 - 至今 中国科学院宁波材料技术与工程研究所 副研究员
出版信息
科研活动
参与会议
(1)Photo-Click Chemistry Enables High-Resolution and High-Fidelity Photolithography of Quantum Dots 2026-04-02(2)High-Resolution Electrochromic Non-Emissive Displays Based on Direct Optical Patterning of WOx Nanoparticles 2025-03-25(3)面向像素化显示的双稳态电致变色材料与器件 第六届全国电致变色大会 2024-05-17
代表性论文
[1] C. Gu, Z. Zhai, W. Wang, H. Tan, S. Ding, J. Fan, L. Qian, T. Zhang* and C. Xiang*. Ultra-high-resolution nondestructive photolithography of quantum dots enabled by photo-shield crosslinker. Mater. Today 2025, 89, 100–106;
[2] C. Gu, G. Yang, S. X.-A. Zhang and Y.-M. Zhang*. Direct optical processing of electrochromic materials for non-emissive displays. Acc. Chem. Res. 2025, 58, 2737–2748;
[3] C. Gu, G. Yang*, W. Wang, A. Shi, W. Fang, L. Qian, X. Hu, T. Zhang*, C. Xiang* and Y.-M. Zhang*. Direct photolithography of WOx nanoparticles for high-resolution non-emissive displays. Nano-Micro Lett. 2025, 17, 67;
[4] C. Gu, S. Wang, J. He, Y.-M. Zhang* and S. X.-A. Zhang*. High-durability organic electrochromic devices based on in-situ-photocurable electrochromic materials. Chem 2023, 9, 2841−2854 (Featured Article);
[5] C. Gu, Y. Yan, J. He, Y.-M. Zhang* and S. X.-A. Zhang*. Transparent and energy-efficient electrochromic AR display with minimum crosstalk using the pixel confinement effect. Device 2023, 1, 100126;
[6] C. Gu, A.-B. Jia, Y.-M. Zhang* and S. X.-A. Zhang*. Emerging electrochromic materials and devices for future displays. Chem. Rev. 2022, 122, 14679−14721 (Highly cited paper);
[7] C. Gu#, X. Wang#, A.-B. Jia, H. Zheng, W. Zhang, Y. Wang, M. Li, Y.-M. Zhang* and S. X.-A. Zhang*. A strategy of stabilization via active energy-exchange for bistable electrochromic displays. CCS Chem. 2022, 4, 2757−2767;
[8] C. Gu*, T. Zhang* and C. Xiang*. 80‐2: High‐resolution electrochromic non‐emissive displays based on direct optical patterning of WOx nanoparticles. SID Symp., Dig. Tech. Pap. 2025, 56, 689−690;
[9] Z. Zhai#, C. Gu*#, W. Wang, H. Tan, C. Han, T. Zhang* and C. Xiang*. Nondestructive direct photolithography of colloidal quantum dots enabled by benzophenone-based crosslinkers. Nano Res. 2025, 18, 94907980;
[10] W. Wang#, C. Gu*#, Z. Zhai, H. Tan, C. Xiang, H. Cheng, Y. Feng and T. Zhang*. Efficient quantum dot light-emitting diodes based on solution-processed WOx nanoparticles. Adv. Optical Mater. 2025, 2403443;
[11] W. Fang#, C. Gu#, G. Yang*, A. Shi, T. Wei, T. Zhang* and C. Xiang. A uniformly coloring electrochromic device based on a cardo fluorene-grafted viologen derivative with high dissolution stability. J. Mater. Chem. C 2024, 12, 17263-17269;
[12] G. Yang*#, J. Fan#, K. Zhang#, C. Gu#, J. Li, K. Kang, C. Xiang, L. Qian and T. Zhang*. Electrochromic reflective displays based on in situ photo-crosslinked PEDOT:PSS patterns. Adv. Funct. Mater. 2024, 34, 2314983.
科研项目
入选2024年国家资助博士后计划A档资助(博士后创新人才支持计划),主持国家自然科学基金青年项目、中国博士后科学基金面上项目、中科院特别研究助理资助项目、浙江省基金探索项目、宁波市自然科学基金等