主要从事新型材料特性、光学新效应及器件研制工作,目前发表论文60余篇,主持国家自然科学基金2项,江苏省自然科学基金2项和校级项目若干。
目前为物理学和电子信息两个专业的硕士生导师。已指导研究生17名,其中12名已毕业(均顺利毕业,就业范围涉及华为、中兴、移动、电信等国企或公司等),3名研究生获得国家奖学金。欢迎物理学、材料学、电子等专业的本科生报考,欢迎广大有抱负有情怀的年轻人加入。
科研项目
1. 国家自然科学基金面上项目:同步辐射技术研究BiS2/BiSe2基超导材料的高压调控机理(No. 12175107),55万,执行年限2022.01-2025.12
2. 江苏省自然科学基金面上项目:局域结构视域下BiS2/BiSe2基材料的超导机理研究(No. BK20171440),10万,执行年限2017.7- 2020.6
3. 国家自然科学基金青年项目:铁基高温超导材料SmFeAsO1-xFx中量子临界点的同步辐射谱学研究(No.11405089), 22万,执行年限2015.01-2017.12
4. 江苏省自然科学基金青年项目:Co-Zn共掺杂LaOFeAs超导材料的同步辐射谱学研究(No.BK20130855), 20万,执行年限2013.07-2016.06
教改项目:
1. 南京邮电大学教学改革研究项目:双一流背景下高校教师探究式教学能力的提升其在《大学物理》教学中的运用,2019.7-2020.6
2. 南京邮电大学教学改革研究项目:OBE模式在大学物理课程教学中的应用研究,2017.01- 2017.12
3. 南京邮电大学通达学院教学改革研究项目:清考取消制度下基于JiTT的PI教学模式在大学物理教学中的应用,2018.11-2019.10
4.
南京邮电大学通达学院教学改革研究项目:基于应用型人才培养模式的独立学院大学物理教学改革研究,2016.11-2017.10
论文代表作:
[1] Actively
manipulating the photonic spin Hall effect by bias-assisted
light-induced carrier injection, Optics Letters, 47:5747, 2022
[2] A promising mechanism for photonic spin
Hall effect and refractive index sensing: surface exciton polaritons, Ann.
Phys. (Berlin), 2300309, 2023.
[3] Enhancing terahertz photonic spin Hall
effect via optical Tamm state and the sensing application, Chinese Physics B,
31: 124202, 2022
[4] Highly sensitive refractive index
sensing based on photonic spin Hall effect and its application on cancer
detection, IEEE Sensors Journal, 22: 12754, 2022
[5] Photonic spin Hall
effect and terahertz gas sensor via InSb-supported long-range surface plasmon
resonance, Chinese Physics B,
31: 014205, 2022
[6] First-principles
study of moderate phonon-mediated pairing in high-pressure monoclinic phase of
BiS2-based superconductors, Chinese
Physics B, 32: 107401, 2023
[7] Modulation and enhancement of
photonic spin Hall effect with graphene in broadband Regions, Chinese Physics B, 30: 034202, 2021
[8] Role of local atomic displacements
in the superconductivity of Sr0.5La0.5FBiS2 and Sr0.5La0.5FBiSe2 system, Materials Research Bulletin, 111: 154, 2019
[9] Non-monotonic effect of the
electronic transport and magnetic properties in a Sm-doped Sr2−xSmxIrO4 system, EPL, 124: 17004, 2018.
[10] Enhanced insulating behavior in the Ir-vacant
Sr2Ir1−xO4 system dominated by the local structure distortion, Journal of Synchrotron Radiation, 25: 1123,
2018.
[11] Role of local structure distortion
in the suppression of superconductivity for Eu3-xSrxBi2S4F4 system, Journal of Alloys and Compounds, 743: 547,
2018.
[12] A critical point in Sr2-xIrO4 and less
distorted IrO6 octahedra induced by deep Sr-vacancies, Materials Research
Bulletin, 90: 1-7, 2017.
[13] Electron Transfer and Local Atomic
Displacement in Sr1−xCexFBiS2 Revealed
by X‑ray Absorption Spectroscopy, The Journal of Physical Chemistry C,121:
8525, 2017.
[14] La-doped
effect on spin-orbit coupled Sr2IrO4 probed by x-ray
absorption spectroscopy, New Journal of Physics, 18: 093019, 2016.
[15] Role of
valence changes and nanoscale atomic displacements in BiS2-based
superconductors,Scientific Reports, 6:37394, 2016.
[16] Charge redistribution
and a shortening of the Fe-As bond at the quantum critical point of SmO1-xFxFeAs,Journal of Synchrotron Radiation, 22: 1030-1034, 2015.