论文著作:
1.The Synergy of Hydrogen Bond and Entanglement of Elastomer Captures Unprecedented Flaw Insensitivity Rate. Small, 2023. https://doi.org/10.1002/smll.202207409 ( 15.153/Q1)
2.Efficient spatial separation of charge carriers over CoS 1+x cocatalyst modified MIL-88B (Fe)/ZnIn 2 S 4 S-scheme heterojunctions for photoredox dual reaction and insight into the charge-transfer mechanism. Separation and Purification Technology,2022. https://doi.org/10.1016/j.seppur.2022.122509, (TOP期刊, 9.136/Q1)
3.Ultrahigh Energy-Dissipation Thermal Interface Materials through Anneal-Induced Disentanglement. ACS Materials Letters. 2022, 4, 874−881. (TOP期刊,11.4/Q1 )
4.Constructing Ti3C2 MXene/ZnIn2S4 heterostructure as a Schottky catalyst for photocatalytic environmental remediation. Green Energy & Environment, 7 (2022) 246–256.(TOP期刊,12.781/Q1)
5.Hexagonal MgAl-LDH simultaneously facilitated active facet exposure and holes storage over ZnIn2S4/MgAl-LDH heterojunction for boosting photocatalytic activities and anti-photocorrosion. Separation and Purification Technology, 300 (2022) 121819. (TOP期刊, 9.136/Q1)
6.Photothermal effect and continuous hot electrons injection synergistically induced enhanced molecular oxygen activation for efficient selective oxidation of benzyl alcohol over plasmonic W18O49/ZnIn2S4 photocatalyst. Applied Catalysis B: Environmental. 299 (2021) 120675. (TOP期刊,24.319/Q1)
7.A dramatic enhancement of antibiotic photodegradation catalyzed by red mud-derived Bi 5 FeTi 3 O 15 . Separation and Purification Technology, 275 (2021) 119244.(TOP期刊, I9.136/Q1)
8.Crystallinity-dependent photodegradation of metallic Bi in situ grown on perovskite Bi3 TiNbO9 nanosheets toward antibiotic. Chemosphere,285 (2021) 131554 (TOP期刊,8.943/Q1)
9.Surface structure tuning of BiOCl nanosheets by the sequential introduction of oxygen vacancies, PO43−and Ag + for boosting photodegradation of tetracycline hydrochloride. Environmental Research 197 (2021) 111056. 2021.3.21(TOP期刊,IF = 8.431)
10.A pH-responsive hydrophilic controlled release system based on ZIF-8 for self-healing anticorrosion application. Chemical Engineering Journal, 415 (2021) 128985.(TOP期刊,IF = 16.744)
11.Zhenfei Yang,a,Xinnian Xia*, Luhua Shao, Longlu wang, Yutang Liu. Efficient photocatalytic degradation of tetracycline under visible light by Z-scheme Ag3PO4/mixed-valence MIL-88A(Fe) heterojunctions: Mechanism insight, degradation pathways and DFT calculation. Chemical Engineering Journal, 410 (2021) 128454.(TOP期刊,IF = 16.744)
12.Yanwei Zhu, Jing Chen, Luhua Shao,Xinnian Xiaa*, Yutang Liu, Longlu Wang. Oriented facet heterojunctions on CdS nanowires with high photoactivity and photostability for water splitting,Applied Catalysis B: Environmental, 268 (2020) 118744. (TOP期刊,IF = 24.319)
13.Luhua Shao, Yutang Liu, Longlu Wang, Xinnian Xia*, Xiangyu Shena .Electronic structure tailoring of BiOBr (0 1 0) nanosheets by cobalt doping for enhanced visible-light photocatalytic activity, Applied Surface Science 502 (2020) 143895. (TOP期刊,IF = 7.392)
14.Shu Cheng, Luhua Shao, Jianhong Ma,Xinnian Xia*, Yutang Liu,Zhenfei Yang, Cong Yang and Sijian. Simultaneous Removal of Phosphates and Dyes by Al-doped Iron Oxides Decorated MgAl Layered Double Hydroxide Nanoflakes. Environmental Science: Nano, 2019. (TOP期刊,IF=9.473)
15.Jing Gao, Yutang Liu, Xinnian Xia⁎,Longlu Wang, Luhua Shao, Tao Cai,Wanyue Dong. Mechanisms for photo assisted Fenton of synthesized pyrrhotite at neutral pH. Applied Surface Science 463 (2019) 863–871.(TOP期刊,IF = 7.392)
16.Yanwei Zhu, Longlu Wang, Yutang Liu, Luhua Shao,Xinnian Xia*. In-situ hydrogenation engineering of ZnIn2S4 for promoted visible-light water splitting.Applied Catalysis B: Environmental 241 (2019) 483–490.(TOP期刊,IF = 24.319)