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Keyword [electrochemistry.]
Result: 61 - 80 | Page: 4 of 10
61. Application Of Quantum Chemistry And Electrochemistry In Determination And Toxic Investigation Of Phenols In Environment
62. Organic Molecular Self-Assembly System For Electron Transport Study
63. Research And Practice Of Key Benefication On No.100 And No.105 Ore Body Of Dachang Tin-polymetallic Deposit
64. Research On Flotation Separation Of Complex Lead-Zinc-Sliver Sulfide Ore And Its Practice
65. Fundamental Research On Biooxidation Of Gold Ores Containing Arsenic
66. Coupling Reactions Catalyzed With Phosphine Ligands With Cobaltocenium Backbone And Synthesis, Properties Of Their Derivatives
67. Synthesis And Properties Of Diiron Complexes As Biomimetic Models For The Active Site Of Fe-Fe Hydrogenases
68. Fabrication Of Transition-Metal Nanostructures And Ultraviolet Laser Excited Surface-Enhanced Raman Scattering (UV-SERS)
69. Electrochemical Study Of Osmacycles, Ruthenacycles, Iridacycles And Related Organic Compounds
70. Preparation And Investigation Of 1-D Functional Nanomaterials Based On Electrospinning Technique
71. The Construction And Application Of Novel Sensing Interfaces For Pesticide Determination And Bioactivity Research
72. Effect Of Vibrio Natriegens On Metal Corrosion In Sea Water And Research On Anti-pitting Method
73. Fabrication And Characterization Of Metal-Molecule-Metal Junctions
74. Preparation Of Conducting Polymer Nanomaterials In Room Temperature Ionic Liquids
75. Investigation Of Preparation And Properties Of Trivalent Chromium Coatings On Al 6063 Alloy
76. The Experimental And Theoretical Studies Of Raman Spectra Of Benzothiazolinethione Compounds And P-Aminothiolphenol On Gold
77. Study On Technology Of Barium Phosphate Surface Treatment For Magnesium Alloy
78. The Investigation And Preparation Of New Fuel Cell Electro-catalysts And Electrochemical Study At Liquid/Liquid Interface
79. Synthetic, Structural And Catalytic Study On [FeFe]-hydrogenase Active Site Models Containing Porphyrin And Porphyrinozinc Moieties
80. Investigations On Chemistry Of The New Types Of [FeFe] Hydrogenase Models With Single, Double And Triple-Butterfly [2Fe2S] Skeleton
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