论文著作:
[1] 通讯作者. Oxidative desulfurization of liquid fuels catalyzed by W2C@C derived from metallo-phthalocyanine/phosphotungstic acid composites, Sep. Purif. Technol., 2022, 281, 119953
[2] 通讯作者. A novel strategy for loading metal cocatalysts onto hollow nano-TiO2 inner surface with highly enhanced H2 production activity, Green. Energy. Environ., 2022, https://doi.org/10.1016/j.gee.2021.07.002
[3] 通讯作者. Silicotungstic acid-supported C@SiO2 nanospheres as an efficient oxidative desulfurization catalyst, Chem. Eng. Sci., 2022, 248, 117225
[4] 通讯作者. Enhanced Photocatalytic Activity by Pt Confined within N Doped Carbon on TiO2 Inner Surface,Ind. Eng. Chem. Res., 2022, 61, 2494-2501
[5] 通讯作者. Ultra-deep oxidative desulfurization of high sulfur liquid fuels with molybdenum carbide@carbon loaded on N-doped graphene, Fuel, 2022, 324, 124534
[6] 通讯作者. Ultrafine W2C well-dispersed on N-doped graphene: Extraordinary Catalyst for Ultrafast Oxidative Desulfurization of High Sulfur Liquid Fuels, Applied Catalysis A-General, 2022, (643), 118791
[7] 通讯作者. N, P-codoped Molybdenum Carbide Nanoparticles loaded into N, P-codoped Graphene for the enhanced electrocatalytic hydrogen evolution, Int. J. Hydrogen Energ., 2022, 47 (69), 29730-29740
[8] 通讯作者. Mesoporous g-C3N4 decorated by Ni2P nanoparticles and CdS nanorods together for enhancing photocatalytic hydrogen evolution, Int. J. Hydrogen Energ., 2021, 46(41), 21442-21453
[9] 通讯作者. Three-Dimensional Graphene Oxide Covalently Functionalized with Dawson-Type Polyoxotungstates for Oxidative Desulfurization of Model Fuels, Ind. Eng. Chem. Res., 2021, 60(1): 114-127.
[10] 通讯作者. A trace ppb-level electrochemical H2S sensor based on ultrathin Pt nanotubes, Talanta, 2021, 233, 122539
[11] 通讯作者. Covalent immobilization of Dawson polyoxometalates on hairy particles and its catalytic properties for the oxidation desulfurization of tetrahydrothiophene, J. Clean. Prod., 2020, 274, 122774.
[12] 通讯作者. N-doped porous carbon-stabilized Pt in hollow nano-TiO2 with enhanced photocatalytic activity, Int. J. Hydrogen Energ., 2020, 45(46), 24779-24791.
[13] 通讯作者. Synchronous synthesis and immobilization of metal phthalocyanine for the aerobic oxidation of styrene, China Pet. Process. Pe., 2020, 22(4), 73-84.
[14] 通讯作者. Covalent immobilization of phthalocyanine on graphene oxide for the degradation of phenol,J. Taiwan Inst. Chem. E.,2019, 104, 187-200
[15] 第一/通讯作者. Preparation, characterization and photocatalytic activity of Dawson type phosphotungstate/graphene oxide composites, Adv. Powder Technol., 2019, 30(7), 1400-1408.
发明专利:
[1] 王蕊欣等,金属卟啉功能化聚4-乙烯基吡啶-苯乙烯复合交联微球催化剂及其制备方法, 2010.12, 中国, ZL200910075200.2
[2] 王蕊欣等,一种硅胶固载化金属卟啉化合物的制备及其应用方法, 2010.12,中国,ZL 200910074478.8
[3] 王蕊欣等,一种固载化双齿席夫碱型氧钒配合物催化剂的制备及其应用方法,2013.7,中国,ZL 201210018694.2
[4] 王蕊欣等,交联聚苯乙烯固载化金属卟啉催化氧气氧化环己烷的方法, 2014.3, 中国,ZL 201110021513.7
[5] 王蕊欣等,N,N-双齿席夫碱型氧钒Ⅳ配合物催化剂及其制备方法和应用方法, 2014.11,中国, ZL 201310215836.9
[6] 王蕊欣等,一种水杨羟肟酸型螯合树脂及其制备方法,2015.2,中国,ZL201310026082.2
[7] 王蕊欣等,羟肟酸功能化聚合物/无机复合螯合吸附材料及其制备方法,2015.4,中国,ZL 201310501923.0
[8] 王蕊欣等,固载化阳离子金属卟啉/杂多阴离子复合催化剂及其制备和应用方法,2015.7,中国,ZL 201210406869.7
[9] 王蕊欣等,交联聚苯乙烯微球固载四甲基哌啶氮氧自由基催化剂及其制备和应用方法, 2018.8,中国,ZL 201510337357.3
[10] 王蕊欣等,固载化氨基酚型双齿席夫碱氧钒(Ⅳ)配合物催化剂的制备及其应用方法,2018.10,中国,ZL 201610668251.6
[11] 王蕊欣等,一种高效吸附黄酮类物质的羟肟酸功能化聚合物/无机复合吸附剂及制备方法,2018.10,中国,ZL 201610075496.8
[12] 王蕊欣等,同步合成与固载法制备固载化酞菁金属催化剂及其应用方法,2019.1,中国,ZL 201610334170.2
[13] 王蕊欣等,氨基酚型双齿席夫碱配基功能化聚合物-稀土配合物发光材料及其制备方法,2019.10,中国,ZL 201610535431.7
[14] 王蕊欣等,一种氧化石墨烯共价固载化金属酞菁催化剂及其制备方法和应用,2021.9,中国,ZL 201811366096.8
[15] 王蕊欣等,酞菁衍生物修饰表面活性剂与多金属氧酸盐自组装纳米材料及其制备方法,2021.6,中国,ZL 201910746056.4
[16] 王蕊欣等,一种聚乙烯基咪唑功能化的聚砜微滤膜及其制备方法和应用,2022.3,中国,ZL 202010084380.7