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赵文静

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研究方向 : 手性纳米材料
讲师 
部门 : 数理学院
学历: 博士研究生毕业
DBLP:

个人简介

主要从事软凝聚态物理前沿交叉学科研究。

研究光和软物质相互作用现象和机理、手性微/纳结构软物质功能材料及其在生物传感上的应用。

教育经历

入学时间 毕业时间 学位授予单位 学历
2012-09-01 2019-03-04 北京理工大学 博士研究生毕业
2007-09-01 2011-06-30 武汉理工大学 大学本科毕业

工作经历

起始年月 截止年月 所在单位名称
2019-07-15 2023-03-10 北京大学

社会职务

社会活动

研究领域

研究方向包括:

(1)手性等离激元纳米材料的构建及其光学活性的调控;

(2)螺旋链高分子材料的功能化及其在分子机器领域的应用。

本科生

课程名称 开课学年 课程总学时 选课人数 课程性质
大学物理实验(I) 2023 32 23 实践环节必修
大学物理实验(I) 2023 32 26 实践环节必修

研究生

校级项目

纵向项目

横向项目

论文信息

[+][-]代表性论文
  • 1. DOI 赵文静,吴扬
    High Thermoelectric Performance Sheds New Light on Low-grade Waste Heat Recovery[期刊论文],National Science Open,2024-05-17
  • 2. DOI Song, Jian,Ji, Chang-Yin,Ma, Xiaoyun,Li, Jiafang,赵文静,Wang, Rong-Yao
    Key Role of Asymmetric Photothermal Effect in Selectively Chiral Switching of Plasmonic Dimer Driven by Circularly Polarized Light[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY LETTERS,2024-01-22
  • 3. DOI 赵文静,吴扬
    Phase-pure wafer-scale InSe for future transistors[期刊论文],Matter,2023-10-04
[+][-] 2024年
  • 1. DOI 赵文静,吴扬
    High Thermoelectric Performance Sheds New Light on Low-grade Waste Heat Recovery[期刊论文],National Science Open,2024-05-17
  • 2. DOI Song, Jian,Ji, Chang-Yin,Ma, Xiaoyun,Li, Jiafang,赵文静,Wang, Rong-Yao
    Key Role of Asymmetric Photothermal Effect in Selectively Chiral Switching of Plasmonic Dimer Driven by Circularly Polarized Light[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY LETTERS,2024-01-22
  • 3. DOI 赵文静,吴扬
    Phase-pure wafer-scale InSe for future transistors[期刊论文],Matter,2023-10-04
[+][-] 2023年
  • 1. DOI 赵文静,吴扬
    High Thermoelectric Performance Sheds New Light on Low-grade Waste Heat Recovery[期刊论文],National Science Open,2024-05-17
  • 2. DOI Song, Jian,Ji, Chang-Yin,Ma, Xiaoyun,Li, Jiafang,赵文静,Wang, Rong-Yao
    Key Role of Asymmetric Photothermal Effect in Selectively Chiral Switching of Plasmonic Dimer Driven by Circularly Polarized Light[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY LETTERS,2024-01-22
  • 3. DOI 赵文静,吴扬
    Phase-pure wafer-scale InSe for future transistors[期刊论文],Matter,2023-10-04
[+][-]2022年
  • 1. DOI 赵文静,吴扬
    High Thermoelectric Performance Sheds New Light on Low-grade Waste Heat Recovery[期刊论文],National Science Open,2024-05-17
  • 2. DOI Song, Jian,Ji, Chang-Yin,Ma, Xiaoyun,Li, Jiafang,赵文静,Wang, Rong-Yao
    Key Role of Asymmetric Photothermal Effect in Selectively Chiral Switching of Plasmonic Dimer Driven by Circularly Polarized Light[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY LETTERS,2024-01-22
  • 3. DOI 赵文静,吴扬
    Phase-pure wafer-scale InSe for future transistors[期刊论文],Matter,2023-10-04
[+][-]2021年
  • 1. DOI 赵文静,吴扬
    High Thermoelectric Performance Sheds New Light on Low-grade Waste Heat Recovery[期刊论文],National Science Open,2024-05-17
  • 2. DOI Song, Jian,Ji, Chang-Yin,Ma, Xiaoyun,Li, Jiafang,赵文静,Wang, Rong-Yao
    Key Role of Asymmetric Photothermal Effect in Selectively Chiral Switching of Plasmonic Dimer Driven by Circularly Polarized Light[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY LETTERS,2024-01-22
  • 3. DOI 赵文静,吴扬
    Phase-pure wafer-scale InSe for future transistors[期刊论文],Matter,2023-10-04
[+][-]2020年
  • 1. DOI 赵文静,吴扬
    High Thermoelectric Performance Sheds New Light on Low-grade Waste Heat Recovery[期刊论文],National Science Open,2024-05-17
  • 2. DOI Song, Jian,Ji, Chang-Yin,Ma, Xiaoyun,Li, Jiafang,赵文静,Wang, Rong-Yao
    Key Role of Asymmetric Photothermal Effect in Selectively Chiral Switching of Plasmonic Dimer Driven by Circularly Polarized Light[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY LETTERS,2024-01-22
  • 3. DOI 赵文静,吴扬
    Phase-pure wafer-scale InSe for future transistors[期刊论文],Matter,2023-10-04
[+][-]2020年之前
  • 1. DOI 赵文静,吴扬
    High Thermoelectric Performance Sheds New Light on Low-grade Waste Heat Recovery[期刊论文],National Science Open,2024-05-17
  • 2. DOI Song, Jian,Ji, Chang-Yin,Ma, Xiaoyun,Li, Jiafang,赵文静,Wang, Rong-Yao
    Key Role of Asymmetric Photothermal Effect in Selectively Chiral Switching of Plasmonic Dimer Driven by Circularly Polarized Light[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY LETTERS,2024-01-22
  • 3. DOI 赵文静,吴扬
    Phase-pure wafer-scale InSe for future transistors[期刊论文],Matter,2023-10-04

软件著作

专利

荣誉及奖励

招生信息

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