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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[21]
宋克鹏.
Unravelling Structure and Formation Mechanisms of Ruddlesden–Popper-Phase-like Nanodomains in Inorganic Lead Halide Perovskites.
Journal of Physical Chemistry Letters,
2022.
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[22]
高琨.
有机半导体激发态的量子调控.
科学通报,
66,
1983,
2021.
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[23]
胡海霞.
Rationalizing charge carrier transport in ternary organic solar cells.
APPLIED PHYSICS LETTERS,
120,
23302,
2022.
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[24]
胡海霞.
Rationalizing charge carrier transport in ternary organic solar cells.
APPLIED PHYSICS LETTERS,
120,
2022.
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[25]
陈志豪.
Trap State Induced Recombination Effects on Indoor Organic Photovoltaic Cells.
ACS Energy Letters,
6,
3203,
2021.
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[26]
高文强.
Electromagnetic induction derived micro-electric potential in metal-semiconductor core-shell hybrid nanostructure enhancing charge separation for high performance photocatalysis.
Nano Energy,
71,
2020.
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[27]
高文强.
Electron Spin Polarization-Enhanced Photoinduced Charge Separation in Ferromagnetic ZnFe2O4.
ACS Energy Letters,
6,
2129,
2021.
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[28]
冯林.
Efficient photoluminescence enhancement and tunable photocarrier transfer in vertical 2D organic–inorganic heterostructure by energy funneling.
2D Materials,
8,
25026,
2021.
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[29]
杜晓艳.
Reducing Limitations of Aggregation-Induced Photocarrier Trapping for Photovoltaic Stability via Tailoring Intermolecular Electron–Phonon Coupling in Highly Efficient Quaternary Polymer Solar Cells.
先进能源材料,
2021.
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[30]
乔佳伟.
Efficient photoluminescence enhancement and tunable photocarrier transfer in vertical 2D organic-inorganic heterostructure by energy funneling.
2D Materials,
8,
2021.
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[31]
高铭升.
Organic Chiral Spin-Optics: The Interaction between Spin and Photon in Organic Chiral Materials.
Advanced Optical Materials,
9,
2021.
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[32]
杨玉莹.
Polarized spin-photon coupling in organic ferromagnetic magneto-optic crystals.
APPLIED MATERIALS TODAY,
25,
2021.
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[33]
Zhang, Longlong.
Self-trapping effect on the excitonic and polaronic properties of a single-layer 2D metal-halide perovskite.
2D Materials,
7,
2020.
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[34]
王忠轩.
Organic magnetoelectric and optomagnetic couplings: perspectives for organic spin optoelectronics.
NPG Asia Materials,
13,
2021.
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[35]
杨玉莹.
Magnetic Field Controlled Interlayer Coupling in MoS2 Field Effect Transistors.
Advanced Electronic Materials,
2021.
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[36]
王延鑫.
Light-driven molecular motion modifying the electronic structure and spin properties of solid organic superstructure.
Organic Electronics: physics, materials, applications,
92,
2021.
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[37]
杨玉莹.
All organic multiferroic magnetoelectric complexes with strong interfacial spin-dipole interaction.
5,
2021.
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[38]
陈志艳.
Impeding the charge recombination through modifying the electron-phonon coupling in organic charge transfer complexes.
APPLIED PHYSICS LETTERS,
119,
2021.
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[39]
张康宁.
Multiple Temporal-Scale Photocarrier Dynamics Induced by Synergistic Effects of Fluorination and Chlorination in Highly Efficient Nonfullerene Organic Solar Cells.
Solar RRL,
4,
2020.
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[40]
牛梦思.
Hole Transfer Originating from Weakly Bound Exciton Dissociation in Acceptor-Donor-Acceptor Nonfullerene Organic Solar Cells.
Journal of Physical Chemistry Letters,
10,
7100,
2019.
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