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李海平

-
副教授
硕士生导师
- 性别:男
- 毕业院校:山东大学
- 学历:研究生(博士后)
- 学位:理学博士学位
- 在职信息:在职
- 所在单位:国家胶体材料工程技术研究中心
- 入职时间: 2014-10-23
- 学科:物理化学
- 办公地点:生命北楼609
- 联系方式:hpli@sdu.edu.cn
0531-88361176
访问量:
-
[1]
杨斐.
Surface Modification Induced Construction of Core-Shell Homojunction of Polymeric Carbon Nitride for.
Journal of Colloid and interface science,
594,
64,
2021.
-
[2]
李海平.
Metal-alcohol coordination promoted reduction of bismuth (III) in bismuth-based semiconductors for e.
Applied Catalysis B: Environmental,
344,
2024.
-
[3]
李海平.
Metal single atom-oxygen modification induced transformation of carbon nitride-based heterojunctions.
Chemical Engineering Journal,
489,
2024.
-
[4]
胡文轩.
Metal Single Atom-Hydroxyl Incorporation in Poly(heptazine imide) to Create Active Sites for Photoca.
small,
2024.
-
[5]
于飞.
A general strategy to synthesize single-atom metal-oxygen doped polymeric carbon nitride with highly.
Applied Catalysis B: Environmental,
323,
2023.
-
[6]
王国安.
Mannitol and acidity co-tuned synthesis of oxygen-vacancy-modified bismuth molybdate nanorods for ef.
SCIENCE CHINA-MATERIALS,
66,
1435,
2023.
-
[7]
邓全花.
Stability and Crystallinity of Sodium Poly(Heptazine Imide) in Photocatalysis.
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION,
2023.
-
[8]
.
Interfacial Affinity Determined Photocatalytic Activity: A Comparison between Defective and Bulk Pol.
ACS Applied Materials and Interfaces,
2023.
-
[9]
王国安.
Mannitol and acidity co-tuned synthesis of oxygen-vacancy-modified bismuth molybdate nanorods for ef.
SCIENCE CHINA Materials,
2023.
-
[10]
赵小舟.
Oxygen vacancy dependent photocatalytic CO2 reduction activity in liquid-exfoliated atomically thin .
Applied Catalysis B: Environmental,
297,
2021.
-
[11]
赵小舟.
Oxygen vacancy dependent photocatalytic CO2 reduction activity in liquid-exfoliated atomically thin .
应用催化B,
297,
2021.
-
[12]
霍婷婷.
A dual strategy for synthesizing carbon/defect comodified polymeric carbon nitride porous nanotubes .
Applied Catalysis B-Environmental,
287,
119995,
2021.
-
[13]
于飞.
Single-atom cobalt-hydroxyl modification of polymeric carbon nitride for highly enhanced photocataly.
Chemical Science ,
13,
754,
2022.
-
[14]
霍婷婷.
Ion-Induced Synthesis of Crystalline Carbon Nitride Ultrathin Nanosheets from Mesoporous Melon for E.
ACS Applied Materials & Interfaces,
14,
13419,
2022.
-
[15]
王国安.
Surface-layer bromine doping enhanced generation of surface oxygen vacancies in bismuth molybdate fo.
Applied Catalysis B: Environmental,
310,
121319,
2022.
-
[16]
梁之威.
High-crystalline polymeric carbon nitride flake composed porous nanotubes with significantly improve.
Chemical Engineering Journal ,
432,
134388,
2022.
-
[17]
侯万国.
Soft-template synthesis of sp2-carbon linked polymeric carbon nitride porous nanotubes with enhanced.
Appl. Surf. Sci.,
541,
148427,
2021.
-
[18]
辛霞.
Solvent-Induced Self-Assembly of Copper Nanoclusters for White Light Emitting Diodes.
ACS Applied Nano Materials,
2021.
-
[19]
杨斐.
Surface modification induced construction of core-shell homojunction of polymeric carbon nitride for.
胶体与界面,
594,
64,
2021.
-
[20]
杨斐.
Surface modification induced construction of core-shell homojunction of polymeric carbon nitride for.
Journal of Colloid and Interface Science 2012,
2021.