教授
博士生导师
硕士生导师
性别:男
出生日期:1962-10-21
毕业院校:山东大学
学历:硕士研究生毕业
学位:博士生
在职信息:在职
所在单位:晶体材料研究院
入职时间:1986-07-01
学科:物理化学
无机化学
材料物理与化学
材料学
访问量:
最后更新时间:..
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[181]
吕兴帅.
High-Throughput Screening of Synergistic Transition Metal Dual-Atom Catalysts for Efficient Nitrogen Fixation.
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Engineering antiferromagnetic topological insulators in two-dimensional NaMnBi.
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李润晗.
Engineering antiferromagnetic topological insulator by strain in two-dimensional rare-earth pnictide EuCd2Sb2.
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鲍晓磊.
TiO2/Ti3C2 as an efficient photocatalyst for selective oxidation of benzyl alcohol to benzaldehyde.
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[185]
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Oxygen vacancy enhancing CO2 electrochemical reduction to CO on Ce-doped ZnO catalysts.
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崔子浩.
In situ integration of Fe3N@Co4N@CoFe alloy nanoparticles as efficient and stable electrocatalyst for overall water splitting.
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Enhancing the Photoelectrochemical Water Oxidation Reaction of BiVO4 Photoanode by Employing Carbon Spheres as Electron Reservoirs.
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孙聪.
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邢丹宁.
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[191]
李昱杰.
In-situ growth of Ti3C2@MIL-NH2 composite for highly enhanced photocatalytic H-2 evolution.
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[192]
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Boosting the electrocatalytic HER performance of Ni3N-V2O3 via the interface coupling effect.
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[193]
李昱杰.
2D/2D heterostructure of ultrathin BiVO4/Ti3C2 nanosheets for photocatalytic overall Water splitting.
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[194]
周鹏.
Host dependent electrocatalytic hydrogen evolution of Ni/TiO2 composites.
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王佳佳.
Photostable Ag(I)-Based Metal-Organic Framework: Synthesis, Structure, and Photocatalytic Selective Oxidation Properties.
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翟广耀.
Light-Promoted CO2 Conversion from Epoxides to Cyclic Carbonates at Ambient Conditions over a Bi-Based Metal-Organic Framework.
ACS catalysis,
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[197]
赵仁娜.
Li-intercalation boosted oxygen vacancies enable efficient electrochemical nitrogen reduction on ultrathin TiO2 nanosheets.
Chemical Engineering Journal,
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[198]
姜为易.
Free-Standing Nanoarrays with Energetic Electrons and Active Sites for Efficient Plasmon-Driven Ammonia Synthesis.
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仝凤霞.
Plasmon-Mediated Nitrobenzene Hydrogenation with Formate as the Hydrogen Donor Studied at a Single-Particle Level.
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[200]
马法豪.
Surface Fluorination Engineering of NiFe Prussian Blue Analogue Derivatives for Highly Efficient Oxygen Evolution Reaction.
ACS Applied Materials & Interfaces,
13,
5142,
2021.
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