毕胜辉
时间:2026-06-09 来源:tapplaytapplay,点点体育官方网站登录入口作者:tapplaytapplay,点点体育官方网站登录入口访问量:

毕胜辉,男,汉族,湖南娄底人,1994年7月生,博士,讲师。2024年6月毕业于湖南师范大学tapplay,点点体育官方网站登录入口,获物理学博士学位。2024年7月进入tapplaytapplay,点点体育官方网站登录入口工作。主要从事低维功能材料的物性调控与光电特性研究,聚焦于晶体结构、能级路径及光学响应的外场调控机制。以第一作者或合作者身份在 Advanced Materials, Nano Letters, Nano Today等本领域主流期刊上发表论文十余篇。
主讲课程
《数学物理方法》《FPGA开发与应用》
研究方向
纳米晶体的相结构调控与近红外发光动力学:聚焦于稀土掺杂纳米晶体的晶体场调控、尺寸/相变工程及能量传递路径剪裁,探索近红外二区(NIR-II)发光增强与波长调谐的物理机制与光学纳米探针的应用。
联系方式
邮箱: Shenghui.Bi@hnust.edu.cn
Q Q: 838067685
联系地址:tapplay知行楼A322
学习工作经历
2014.09 - 2018.06 重庆理工大学,光电系,学士
2018.09 - 2021.06 湖南师范大学,电子科学与技术,硕士
2021.09 - 2024.06 湖南师范大学,物理学,博士,导师:曾松军教授
2024.07 - 至今 tapplay,tapplay,点点体育官方网站登录入口,讲师
代表性论文(#共同一作,*通讯作者)
1. Shenghui Bi, Zhiming Deng, Junqing Huang, Xingwang Wen, Songjun Zeng. NIR-II Responsive Upconversion Nanoprobe with Simultaneously Enhanced Single-Band Red Luminescence and Phase/Size Control. Adv. Mater. 2023, 35, 2207038.
2. Shenghui Bi, Yao Xu, Songjun Zeng. Tailoring Crystal Structure and Energy Modulation Pathways for Boosted NIR-II Luminescence Imaging beyond 1600 nm. Nano Lett. 2025, 15, 3201-3211.
3. Shenghui Bi, Xingwang Wen, Ge Sun, Songjun Zeng. Activatable NIR-II Ratiometric Fluorescence Nanoprobe for Real-Time Dynamic Imaging. Nano Today 2023, 53, 102027.
4. Shenghui Bi, Xingwang Wen, Zezheng Wu, Chunxia Wang, Hao Huang, Zhiqiu Liu, Songjun Zeng. Rational Design of Activatable Lanthanide NIR-IIb Emissive Nanoprobe for In-Situ Specific Imaging. Small 2024, 20, 2400883.
5. Shenghui Bi, Zhiming Deng, Qing Jiang, Songjun Zeng. A H2S Triggered Dual-Modal Second Near-Infrared/Photoacoustic Intelligent Nanoprobe for Highly Specific Imaging. Anal. Chem. 2021, 93, 13212-13218.
6. Zhiming Deng, Shenghui Bi#, Mingyang Jiang, Songjun Zeng. Endogenous H2S Activated Orthogonal Second Near-Infrared Emissive Nanoprobe for In Situ Ratiometric Fluorescence Imaging. ACS Nano 2021, 15, 3201-3211.
7. Xingwang Wen, Shenghui Bi (二作), Chunxia Wang, Songjun Zeng. An Activated Structure Transformable Ratiometric Photoacoustic Nanoprobe for Real-Time Dynamic Monitoring. Nano Lett. 2023, 23, 10642-10650.
