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
电子邮箱:bbhuang@sdu.edu.cn
访问量:
最后更新时间:..
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[21]
殷立文.
Lead-Free Perovskite Cs<sub>2</sub>SnBr<sub>6</sub>/rGO Composite for Photocatalytic Selective Oxidation of 5-Hydroxymethylfurfural to 2,5-Diformylfuran.
Chemistry-A European Journal,
29,
2023.
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[22]
毛玉印.
Electronic Structure Manipulation via Site-Selective Atomically Dispersed Ni for Efficient Photocatalytic CO2 Reduction.
ACS Catal. ,
8362-8371,
2023.
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[23]
于世强.
Charge-Transfer-Driven Phase Transition of Two-Dimensional MoTe<sub>2</sub> in Donor-Acceptor Heterostructures.
Journal of Physical Chemistry Letters,
14,
7946,
2023.
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[24]
刘毅博.
Strain-Valley Coupling in 2D Antiferromagnetic Lattice.
Advanced functional materials,
2023.
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[25]
肖涤非.
Stabilizing Cu2O for enhancing selectivity of CO2 electroreduction to C2H4 with the modification of Pd nanoparticles.
Chemical Engineering Journal,
452,
2023.
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[26]
张明晖.
Coupling Benzylamine Oxidation with CO2 Photoconversion to Ethanol over a Black Phosphorus and Bismuth Tungstate S-Scheme Heterojunction.
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION,
62,
2023.
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[27]
王肇祺.
Insight into the complexation mechanism between a BiVO<sub>4</sub> photoanode and tartaric acid for efficient photoelectrochemical H<sub>2</sub> production.
Inorganic Chemistry Frontiers,
10,
4725,
2023.
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[28]
秦学森.
Growth mechanism of [100]-oriented TaON film through an endotaxial transformation from a (012)-LiTaO<sub>3</sub> single crystal substrate.
CRYSTENGCOMM,
25,
2897,
2023.
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[29]
肖涤非.
Boosting the Electrochemical 5-Hydroxymethylfurfural Oxidation by Balancing the Competitive Adsorption of Organic and OH<SUP>-</SUP> over Controllable Reconstructed Ni<sub>3</sub>S<sub>2</sub>/NiO<sub>x</sub>.
ADVANCED MATERIALS ,
2023.
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[30]
张海鹏.
Fabrication of Hematite Photoanode Consisting of (110)-Oriented Single Crystals.
ChemSusChem,
2023.
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[31]
吴亚强.
An organometal halide perovskite supported Pt single-atom photocatalyst for H-2 evolution.
Energy and Environmental Science,
15,
1271,
2022.
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[32]
.
In Situ Preparation of CsPbBr 3 @CsPb 2 Br 5 Composite Assisted with Water as a Highly Efficient and Stable Catalyst for Photothermal CO 2 Hydrogenation.
Chemistry-A European Journal,
2022.
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[33]
李鑫.
Self-assembled supramolecular system PDINH on TiO2 surface enhances hydrogen production.
胶体与界面,
136,
2018.
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[34]
张雨佳.
In Situ Monitoring of the Spatial Distribution of Oxygen Vacancies and Enhanced Photocatalytic Performance at the Single-Particle Level.
Nano Letters,
1244,
2023.
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[35]
.
Synthesis of a WO3 photocatalyst with high photocatalytic activity and stability using synergetic internal Fe3+ doping and superficial Pt loading for ethylene degradation under visiblelight irradiation.
Catalysis Science and Technology,
2018.
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[36]
.
Composite of lead-free halide perovskite Cs3Bi2Br9 with TiO2 as an efficient photocatalyst for C(sp3)?? H bond activation.
应用催化-B,
122812,
2023.
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[37]
李蓓.
In Situ Monitoring Charge Transfer on Topotactic Epitaxial Heterointerface for Tetracycline Degradation at the Single-Particle Level.
ACS Catal. ,
2022.
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[38]
徐亚洋.
Strain-assisted in-situ formed oxygen defective WO3 film for photothermal-synergistic reverse water gas shift reaction and single-particle study.
Chemical Engineering Journal,
433,
2022.
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[39]
吕敏.
BiVO4 quadrangular nanoprisms with highly exposed {101} facets for selective photocatalytic oxidation of benzylamine.
Journal of Materials Chemistry A,
2022.
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[40]
刘木.
Enhanced stability and activity towards photocatalytic CO2 reduction via supercycle ALD of Cu and TiO2.
Chemical Engineering Journal,
429,
2022.
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