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Keyword [Single-atom catalyst]
Result: 61 - 80 | Page: 4 of 6
61. Modification And Electrochemical Properties Of Carbon Based Cathode Materials For Lithium Sulfur Batteries
62. Preparation Of M-N-C Single-atom Catalysts And Catalytic Performance For Chemoselective Hydrogenation Of Nitrostyrene
63. Rapid Detection Of Mecury Ions And Kanamycin And Efficient Removal Of Tetracycline Antibiotics In Aqueous Solution
64. Synthesis Of Single Atom Catalysts Based On SBA-15 Molecular Sieve And Investigation Of Their Hydrogenation Performance
65. Synthesis Of Single-atom Au@FeOOH Nanotubes And Efficient Activation Of Small Molecules
66. Theoretical Study On The Structure And Catalytic Performance Of Titanium Doped Boron Nitride Nanocages
67. Computational Design Of Graphyne-Supported Single-Atom Nanozymes
68. Preparation Of Atomically Dispersed Pd–Based Catalysts By Nitric Acid Vapor Process And Catalytic Performance
69. Research On Multifunctional Nanomaterials For Tumor Marker Detection And Cancer Therapy
70. Zn Single-atom Catalyst: Preparation And Its Application In CO2 Electroreduction
71. Research On The Construction And Application Of Danshensu Electrochemical Sensors
72. Study On MOF-derived Iron Oxide Modified Carbon-based Oxygen Reduction Catalyst
73. N Doped Carbon Supported Single-atom Catalyst:Preparation And Electrocatalytic Performance
74. Preparation Of Zn And Fe Single-atom Catalysts By Ball Milling And Their Catalytic Performance
75. The Study On MOF-Derived Oxygen Reduction Catalysts And Their Air Batteries
76. Theoretical Studies On The Nitrogen Doped Graphene Confined Transition Metal Single Atom Catalyst
77. Application Of Single-Atom Metals And Nitrogen Codoped Graphene And Metal Oxides For Hydrogen And Oxygen Electrode Reactions
78. Preparation And Hydrogen Production Performance Of The G-C3N4-based Photocatalysts
79. Peparation Of Biomass Porous Carbon Supported Single Iron Atom Dectrocatalyst And Its Addlication In Zinc Air Battery
80. Synthesis Of Single-Atom/Cluster Catalysts For Oxygen Reduction By Metal Chloride Vapour Capture Method
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