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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[281]
王朋 , 戴瑛 , 黄柏标 and 朱相林.
Porous Ag-ZnO microspheres as efficient photocatalyst for methane and ethylene oxidation: Insight into the role of Ag particles.
Applied surface science,
456,
493,
2018.
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[282]
黄柏标 , 郑昭科 , 王朋 , 王泽岩 , 刘媛媛 , 秦晓燕 , 张晓阳 and 郑海龙.
Ag-n(+) quantum dots obtained via in situ photodeposition method as photocatalytic CO2 reduction cocatalyst: Borrowing redox conversion between Ag+ and Ag-0.
Applied Catalysis B-Environmental,
243,
381,
2019.
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[283]
魏巍 , 戴瑛 , 牛成旺 and 黄柏标.
Controlling the Electronic Structures and Properties of in-Plane Transition-Metal Dichalcogenides Quantum Wells.
Scientific Reports,
2015.
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[284]
魏巍 , 戴瑛 , 牛成旺 , 马衍东 and 黄柏标.
Electronic properties of two-dimensional van der Waals GaS/GaSe heterostructures.
JOURNAL OF MATERIALS CHEMISTRY C,
2015.
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[285]
魏巍 , 戴瑛 , 尹娜 , 韩圣浩 and 黄柏标.
Electronic structures of in-plane two-dimensional transition-metal dichalcogenide heterostructures.
Physical Chemistry Chemical Physics,
2015.
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[286]
黄柏标 , 王朋 , 张倩倩 , 王泽岩 , 刘媛媛 , 邹桂征 , 戴瑛 and 吴亚强.
Composite of CH3NH3PbI3 with Reduced Graphene Oxide as a Highly Efficient and Stable Visible-Light Photocatalyst for Hydrogen Evolution in Aqueous HI Solution.
Advanced Materials,
30,
2018.
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[287]
魏巍 , 黄柏标 , 戴瑛 and 吴倩.
Computational Screening of Defective Group IVA Monochalcogenides as Efficient Catalysts for Hydrogen Evolution Reaction.
The Journal of Physical Chemestry C,
123,
11791,
2019.
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[288]
周鹏 , 黄柏标 , 刘媛媛 , 王泽岩 , 王朋 , 郑昭科 , 秦晓燕 , 张晓阳 and 戴瑛.
Accelerated electrocatalytic hydrogen evolution on non-noble metal containing trinickel nitride by introduction of vanadium nitride.
Journal of Materials Chemistry A,
7,
5513,
2019.
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[289]
张晓阳 , 王朋 , 张倩倩 , 王泽岩 , 刘媛媛 , 戴瑛 , 黄柏标 , 秦晓燕 and 刘小磊.
Synthesis of a WO3 photocatalyst with high photocatalytic activity and stability using synergetic internal Fe3+ doping and superficial Pt loading for ethylene degradation under visible-light irradiation.
Catalysis Science and Technology,
9,
652,
2019.
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[290]
王朋 , 张倩倩 , 黄柏标 , 王泽岩 , 刘媛媛 , 郑昭科 , 戴瑛 and 刘小磊.
The synergistic effect of light irradiation and interface engineering of the Co(OH)(2)/MoS2 heterostructure to realize the efficient alkaline hydrogen evolution reaction.
ELECTROCHIMICA ACTA,
299,
618,
2019.
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[291]
张晓阳 , 王朋 , 张倩倩 , 黄柏标 , 王泽岩 , 刘媛媛 , 郑昭科 , 戴瑛 , 秦晓燕 and 刘小磊.
Synthesis of MoS2/Ni3S2 heterostructure for efficient electrocatalytic hydrogen evolution reaction through optimizing the sulfur sources selection.
Applied Surface Science,
459,
422,
2018.
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[292]
黄柏标 , 王朋 , 张倩倩 , 王泽岩 , 刘媛媛 , 郑昭科 , 秦晓燕 , 张晓阳 , 戴瑛 and 刘福燕.
Porous Co3O4 nanosheets as a high-performance non-enzymatic sensor for glucose detection.
Analytical and Bioanalytical Chemistry,
410,
7663,
2018.
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[293]
王泽岩 , 黄柏标 , 郑昭科 , 王朋 , 刘媛媛 and 戴瑛.
Enhanced selectivity and activity for electrocatalytic reduction of CO2 to CO on an anodized Zn/carbon/Ag electrode.
Journal of Materials Chemistry A,
7,
16685,
2019.
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[294]
魏巍 , 黄柏标 , 戴瑛 and 董衍如.
Semimetallic Si3C as a high capacity anode material for advanced lithium ion batteries.
Applied Surface Science,
479,
519,
2019.
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[295]
魏巍 , 黄柏标 , 戴瑛 and 李风平.
Evolution of the linear band dispersion of monolayer and bilayer germanene on Cu(111).
Physical chemistry chemical physics,
19,
22844,
2017.
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[296]
魏巍 , 黄柏标 , 戴瑛 and 吕兴帅.
Two-dimensional germanium monochalcogenides for photocatalytic water splitting with high carrier mobility.
Applied Catalysis B-Environmental,
217,
275,
2017.
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[297]
魏巍 , 戴瑛 and 黄柏标.
Hybridization Effects between Silicene/Silicene Oxides and Ag(111).
The Journal of Physical Chemistry C,
2016.
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[298]
魏巍 , 黄柏标 , 戴瑛 and 吕兴帅.
A first-principles study of NbSe2 monolayer as anode materials for rechargeable lithium-ion and sodium-ion batteries.
Journal of Physics D-Applied Physics,
50,
2017.
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[299]
魏巍 , 俞琳 , 黄柏标 , 戴瑛 and 吕兴帅.
Sc2C as a Promising Anode Material with High Mobility and Capacity: A First-Principles Study.
chemphyschem,
18,
1627,
2017.
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[300]
魏巍 , 戴瑛 and 黄柏标.
Hydrogenation of silicene on Ag(111) and formation of half-silicane.
Journal of Materials Chemistry A,
5,
18128,
2017.
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