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61. The Design And Synthesis Of Layered Double Hydroxides Electrocatalysts Toward Enhanced Oxygen Evolution Reaction
62. Modulation On Active Site Structure Of Ni-based Catalysts And Their Catalytic Performance Toward Alcohols Conversion
63. Study Of Sulphur Poisoning And Regeneration Mechanism On Cu/SAPO-34 Catalysts
64. Probing The Active Sites Of Pd-based Catalysts For Direct Synthesis Of H2O2
65. The Structure-Activity Relationship In Fischer-Tropsch Synthesis Reaction Catalyzed By Transition Metal Composites
66. Designing Of Protic Ionic Liquids For Efficient NH3 Separation
67. Synthesis And Properties Of Metal- Imidazole Carboxylic Acid Framework Materials
68. Identification And Modulation On The Active Sites Of Cu/H-MOR Catalysts For The Carbonylation Of Dimethyl Ether
69. Synthesis Of CO_XSN_Y Intermetallic Compounds Nanocatalysts Toward Selective Hydregenation Of Citral
70. The Design And Synthesis Of The Model System For Studying The Active Sites On Chromium Based Catalysts
71. Preparation Of Titanosilicalite-1 Zeolite Supported Nano Gold Catalysts And Study Of Catalytic Performance For Gas-phase Epoxidation Of Propylene
72. Mediation Of Defect And Active Sites Of Carbon Nitride For Promoting Photocatalytic Hydrogen Evolution
73. The Role Of Pore Diffusion During NH3-SCR Over Cu/SAPO-34 Catalysts With Diverse Particle Sizes
74. The Research Of Functional Metal Organic Frameworks Catalyzed Tandem Reaction
75. The Research For MOFs-derived Transition Metaland Nitrogen Co-doped Carbon Based Catalyst For Efficient Oxygen Reduction Reaction
76. Preparation And Catalytic Application Of Pd-based Nanocatalysts
77. Controllable Preparation Of Pd Based Metal-acid-alkali Multifunctional Catalysts For One-pot Synthesis Of Mibk
78. Hierarchical Porous Fe-N-S-Doped Carbon For Efficient Oxygen Reduction Reaction
79. Modification Of The Active Sites Of Molybdenum-based Electrocatalysts And Their Performance Research For Hydrogen Evolution Reaction
80. Preparation For The Different Morphology Of Cerium Oxide And Investigation Of The Palladium-only Catalytic Performance
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