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基本信息Personal Information
研究员(自然科学) 博士生导师 硕士生导师
性别 : 男
毕业院校 : 中国科学院大连化学物理研究所
学历 : 博士研究生毕业
学位 : 博士学位
在职信息 : 在岗
所在单位 : 杭州高等研究院
办公地点 : 杭州高等研究院童趣楼101-2
联系方式 : 0571-82257902
Email :
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- [1]85. MFI zeolite surface chemistry controls PdAu nanostructure and catalytic pathways in selective butadiene hydrogenation.(Submitted).2026
- [2]84. Non-Noble-Catalyzed Selective Hydrogenation of Acetylene and Butadiene: Shared Design Principles and Reaction-Specific Constraints.(Submitted).2026
- [3]83. Second-Shell Phosphorus Stabilizes the Working State of Single-Atom Cobalt for High-Temperature Reverse Water-Gas Shift.(Submitted)
- [4]82. Transcrystallization of X Zeolite into SSZ-39 for enhanced NH3-SCR catalysis through tailored Brønsted acid sites and Cu species.Chemical Science (In revision).2026
- [5]81. Self-Bound Hierarchical Beta Zeolite Catalysts: Engineering Intracrystalline Mesopores for High-Efficiency Tetralin Hydrocracking.Industrial & Engineering Chemistry Research (In press).2026
- [6]80. Proximity-enabled pathway competition in propane/CO2 conversion over coupled ZnZrOx and Zn/SSZ-13 catalysts.Journal of Catalysis.2026,462 :117063
- [7]79. Metal–Support Synergy in Nitrogen-Doped Carbon Supported Ru Nanoparticles Enables Base-Free Aerobic Oxidation of Isononanol to Isononanoic Acid.Chemistry - A European Journal.2026,0 :e71347
- [8]78. Interfacial engineering of ReOx sites with ZrO2 clusters boosts active site formation for efficient methyl oleate metathesis.Chemical Engineering Journal.2026,537 :176006
- [9]77. In Situ-Generated CO Drives Dynamic Ni-Zn Restructuring to Govern Kinetic Selectivity in CO2 Hydrogenation.ACS Catalysis.2026,16 :4972
- [10]76. Defect-healing driven stable Pt species formation in Silicalite-1 zeolite for base-free alcohol oxidation in water.Applied Catalysis A: General.2026,724 :121055
- [11]75. Sustainable diamine synthesis via continuous-flow reductive amination over a stable Re1Ox–Ni interface.Green Chemistry.2026,28 :4640
- [12]74. DB-FTIR Spectroscopy Unravels Confinement-Driven Modulation of Cu Species in Zeolite Catalysts for Low- Temperature NH3-SCR of NOx.Journal of Catalysis.2026,453 :116473
- [13]73. N-doped carbon-supported Pd-Au alloys in butadiene hydrogenation: Reaction kinetics and catalyst stability.Applied Catalysis A: General.2025,705 :120441
- [14]72. Decoding structure–selectivity interplay in Pd–Ag nanocatalysts for butadiene semi-hydrogenation.Chinese Journal of Catalysis.2026,87 :342-352
- [15]71. Graphene-armored nickel nanoparticles promote stable and selective butadiene hydrogenation.Carbon.2025,243 :1205326
- [16]70. Methane dry reforming on N-doped carbon supported Mo2C catalysts: Impacts of nitrogen functionality and Ni addition.ChemCatChem.2025 :e00541
- [17]69. Integrated Fischer-Tropsch synthesis and hydroformylation technologies toward high-value commodities from syngas.Chinese Journal of Catalysis.2025,73 :16-38
- [18]68. Selective conversion of syngas to C4+ long-chain alcohols.Nature Communications.2026,17 :4323
- [19]67. Design of Technical Ni@Silicalite-1 Catalysts for Dry Reforming of Methane.Chemical Engineering Journal.2025,512 :162223
- [20]66. Electronic effect in bromide-modified noble metal catalysts promotes highly stable and selective hydrogenation.Chemical Engineering Journal.2024,500 :156931

