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[1] 隋美蓉,顾修全.In situ modification BiVO4 photoanodes with ZnO quantum dots for booting photoelectrochemical water oxidization,2024,卷: 35期: 35
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[2] 顾修全,黄子君,徐先杰,高莎莎,张辉,赵宇龙,黄胜.Enhanced stability of perovskite CsPbBr3 QDs via Synergetic encapsulation with ZnO nanocrystals and commercial polymer,2024,v 275,
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[3] Sui, Meirong,顾修全.Fabrication of CoOx/BiVO4 Photoanodes with Enhanced Photoelectrochemical Water Splitting,2024,v 53,n 9,p5326-5333
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[4] 王科涵,洪章连,顾修全,支明佳.Effect of Mg/Sn ratio on the structure and electrochemical performance of O3-type high entropy layered oxides for sodium-ion battery cathodes,2024,卷: 90
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[5] 杨东,孙佳鑫,高沙沙,Yu, Qiuchen,Zhao, Yizhe,Huo, Yumeng,Wan, Zixin,黄胜,Wang, Yanyan,顾修全.General Model for Predicting Response of Gas-Sensitive Materials to Target Gas Based on Machine Learning,2024,卷: 9期: 5页: 2509-2519
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[6] 庄雨燕,曹磊,顾修全,Miao, Shujie,高源,方元,黄胜,何新建.Fabrication of lead-free perovskite MASnBrI2 nanocrystals-embedded polymer composites for flexible strain sensors,2024,v 50,n 3,p5766-5774
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[7] Ouyang, Chong,Quan, Xinyao,Chen, Zi Ang,Wang, Kehan,顾修全,洪章连,支明佳.Intercalation- and Vacancy-Enhanced Internal Electric Fields in ZnIn2S4 for Highly Efficient Photocatalytic H2O2 Production,2023,卷: 127期: 42页: 20683-20699
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[8] 朱兴伟,李治,顾修全.CdIn2S4光催化剂的合成及水分解产氢实验设计,2023,2023年05期:46-51,6
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[9] 朱兴伟,耿会敏,顾修全.水热法合成BiVO4微球的乙醇传感特性研究,2023,2023年04期:30-35,6
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[10] 朱兴伟,耿会敏,顾修全.Modification of BiVO4 nanoporous films with FeOOH for photoelectrochemical water oxidation and determination of glutathione,2023,v 34,n 5,
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[11] Ouyang, Chong,Huang, Weibo,Tang, Hao,Liu, Weiping,顾修全,Hong, Zhanglian,Zhi, Mingjia.Hierarchical MoO2/ZnIn2S4Schottky Heterojunction Stimulated Photocatalytic H2Evolution under Visible Light,2022,v 5,n 10,p12739-12751
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[12] Ouyang, Chong,Huang, Weibo,Tang, Hao,Liu, Weiping,顾修全,Hong, Zhanglian,Zhi, Mingjia.Hierarchical MoO2/ZnIn2S4 Schottky Heterojunction Stimulated Photocatalytic H2 Evolution under Visible Light br,2022,卷: 5期: 10页: 12739-12751