论文著作:
1) Chaoyin.Wang#,Kang Lu#, Fang Jin*, et al.,. Modification of MWW layerstructure to investigate the effect of acidity and Zn-type sites on ethanedehydroaromatization. Catalysis Today, 2021, 368, 250-259.
2) Fang Jin*, PengZhang, et al., Fundamental kinetics model of acidity-activity relation for ethyleneoligomerization and aromatization over ZSM-5 zeolites, Chemical EngineeringScience, 2021, 229: 116144-116159.
3) Fang Jin*,#, Yuanzhi Yan#, et al., Ethyleneoligomerization over H- and Ni-form aluminosilicate composite with ZSM-5 andMCM-41 structure: Effect of acidity strength, nickel site and porosity, CatalysisToday, 2020, 355: 148-161.
4) Kang Lu#,Fang Jin*,#, et al., The synergetic effect of acid and nickelsites on bifunctional MWW zeolite catalysts for ethylene oligomerization andaromatization, Sustainable Energy & Fuels, Sustainable Energy & Fuels,2019, 3: 3569-3581.
5) MenghuiYan#, Fang Jin*,#, et al., Synthesis of titanium-incorporatedMWW zeolite by sequential deboronation and atom-planting treatment of ERB-1 asan epoxidation catalyst, Industrial & Engineering Chemistry Research, 2019,58: 4764-4773.
6) Fang Jin, Yang Chun Fan, et al, Single-eventkinetic modeling of ethene oligomerization on ZSM-5,CatalysisToday, 2018, 316: 129-141.
7) Fang Jin*, YangChun Fan, et al., Modified Brønsted Type Equation withAmmonia as Probe Molecule: Quantitative acidity-activity relationship for pyridinesynthesis with ZSM-5 catalyst, Reaction Kinetics, Mechanisms and Catalysis, 2018, 123:517-527.
8) Tie Liang Liu, FangJin*, et al., Synthesis of titanium containing MCM-41from industrial hexafluorosilicic acid as epoxidation catalyst, Catalysis Today, 2017, 297: 316-323
9) Fang Jin, Xianqiao Wang, et al., Synthesis ofZSM-5 with the silica source from industrial hexafluorosilicic acid astransalkylation catalyst, Chinese Journal of Chemical Engineering, 2017, 25: 1303-1313
10) Fang Jin, Y.X. Wu, et al., Effect of Ti incorporatedMWW supports on Au loading and catalytic performance for direct propylene epoxidation,Catalysis Today, 2016, 264: 98-108
11) C.C. Chang, Fang Jin,et al., Effect of the grafting agent on the structure and catalytic performanceof Ti-MCM-22, Catalysis Science & Technology, 2016, 6: 7631-7642
12) Fang Jin, C.C. Chang, et al., New mesoporous titanosilicateMCM-36 material synthesized from pillaring layered ERB-1 precursor, Journalof Materials Chemistry A, 2015, 3: 8715-8724
13) Fang Jin, S.J. Huang, et al., The influences of Al speciesand Ti species on the catalytic epoxidation over Si/Ti-pillared MCM-36synthesized from MCM-22, Catalysis Science & Technology, 2015, 5: 3007-3016
14) Fang Jin, T.H. Lin, et al., Gold supported on Ti incorporatedMCM-36 as efficient catalysts in propylene epoxidation with H2 and O2,RSC Advances, 2015, 5: 61710-61718
15) Fang Jin, C.C. Chang, et al., New Ti-incorporatedMCM-36 as an efficient epoxidation catalyst prepared by pillaring MCM-22 layerswith titanosilicate, Journal of Catalysis, 2014, 319: 247-257