教授
博士生导师
硕士生导师
性别:男
毕业院校:山东大学
学历:研究生(博士)毕业
学位:博士生
在职信息:在职
所在单位:物理学院
入职时间:2017-02-17
学科:光学
凝聚态物理
办公地点:中心校区光电所301
访问量:
最后更新时间:..
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[1]
石雪.
Synergistic effects of hole blocking and F?rster resonance energy transfer process in high-performance photomultiplication organic photodetectors.
Applied Physics Letters,
2024.
-
[2]
付振.
Structural-Evolution Dynamics and Structural-Defect Suppression in High-Efficiency All-Polymer Solar Cells via Dilution Effect.
PRX Energy,
2024.
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[3]
付振.
π-π Stacking Modulation via Polymer Adsorption for Elongated Exciton Diffusion in High-Efficiency Thick-Film Organic Solar Cells.
ADVANCED MATERIALS,
2024.
-
[4]
路向前.
Octahedron distortion-triggered dipole–spin interaction in multiferroic magnetoelectric perovskites.
NPG Asia Materials,
15,
38,
2023.
-
[5]
陈志艳.
Dimerization Triggered Magnetoelectric Coupling Effect and Magnetic Anisotropy in Organic Ternary Crystals.
small,
19,
2023.
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[6]
胡人杰.
An Organic Chiroptical Detector Favoring Circularly Polarized Light Detecting from Near-Infrared to Ultraviolet and Magnetic Field Amplifying Dissymmetry in Detectivity.
Advanced materials (Deerfield Beach, Fla.),
35,
2211935,
2023.
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[7]
张康宁.
Reducing Limitations of Aggregation-Induced Photocarrier Trapping for Photovoltaic Stability via Tailoring Intermolecular Electron–Phonon Coupling in Highly Efficient Quaternary Polymer Solar Cells.
Advanced Energy Materials,
2021.
-
[8]
张康宁.
Triggering favorable energy landscape: a general approach towards highly-efficient and photostable organic solar cells.
Energy & Environmental Science,
2022.
-
[9]
王桐.
Correlating Charge Transfer Dynamics with Interfacial Trap States in High-Efficiency Organic Solar Cells.
ACS Applied Materials & Interfaces,
15,
12109-12118,
2023.
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[10]
张康宁.
Dredging photocarrier trapping pathways <i>via</i> "charge bridge" driven exciton-phonon decoupling enables efficient and photothermal stable quaternary organic solar cells.
Energy & Environmental Science,
16,
3350,
2023.
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[11]
高琨.
有机半导体激发态的量子调控.
科学通报,
66,
1983-1997,
2021.
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[12]
张毛毛.
Directional and ultrafast migrations of excitons/biexcitons in organic polymers by utilizing a local nonuniform electric field.
Journal of Materials Chemistry C,
8,
11274,
2020.
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[13]
孙铭.
Overcoming Disordered Preaggregation in Liquid State for Highly Efficient Organic Solar Cells Printed from Nonhalogenated Solvents.
Advanced Energy Materials,
13,
2023.
-
[14]
张康宁.
Triggering Favorable Energy Landscape: A General Approach towards Highly-Efficient and Photostable Organic Solar Cells.
Energy and Enviromental Science,
2022.
-
[15]
陈志艳.
Mechanoresponsive Spin via Spin-Lattice Coupling in Organic Cocrystals..
Nano Letters,
22,
5481-5486,
2022.
-
[16]
魏蒙蒙.
Response of Spin to Chiral Orbit and Phonon in Organic Chiral Ferrimagnetic Crystals..
ACS nano,
2022.
-
[17]
高铭升.
Synergistic Effect of Chiral Nanofibers Amplifying the Orbit Angular Momentum To Enhance Optomagnetic Coupling.
ACS nano,
16,
4843,
2022.
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[18]
胡人杰.
Control of the conversion between circularly polarized photons and spin by introducing chiral orbit in organic complexes.
NPG Asia Materials,
14,
2022.
-
[19]
宋克鹏.
Direct atomic-scale imaging of a screw dislocation core structure in inorganic halide perovskites.
Physical chemistry chemical physics,
2022.
-
[20]
宋克鹏.
Carrier Separation Enhanced by High Angle Twist Grain Boundaries in Cesium Lead Bromide Perovskites.
Journal of Physical Chemistry Letters,
2022.
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