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Keyword [Ti3C2Tx-MXene]
Result: 61 - 80 | Page: 4 of 5
61. Scalable Preparation And Electromagnetic Shielding Properties Of MXene-Based Films With High Strength
62. Synthesis And Catalytic Performance Of The Composite Electrocatalyst Based On Transition Metal Phosphide And MXene
63. Study On Preparation And Multifunctional Application Of Multi-Stimulus Response Flexible Actuator
64. Preparation And Multifunctional Application Of Polyvinylidene Fluoride/MXene Layered Conductive Composite Films
65. Controllable Preparation And Enhanced Sodium/Potassium Storage Performances For Carbon-based Materials
66. Study On The Electromagnetic Wave Absorption Performance Of Ti3C2Tx-MXene And Their Composites
67. Preparation And Electromagnetic Properties Of Electromagnetic Wave Absorbers With In-situ Grown Carbon Nanotubes
68. Effects Of Electrophoretic Deposition Of MXene On High Modulus Carbon Fiber And Its Composites Interfacial Properties
69. Structural Design Of Fe3O4/MWCNTs/Ti3C2Tx MXene Composites And Their Electromagnetic Shielding Performance
70. Preparation And Gas Sensitive Properties Of Ti3C2Tx MXene Derived-TiO2 And Its Nanocomposites
71. Ti3C2Tx-based Flexible Wearable Electrochemical Sensor Construction And Sweat Detection Application
72. Preparation Of Ti3C2Tx/Fe3O4 Composites And Their Absorption Properties
73. Preparation And Properties Of Flower-Like Electromagnetic Wave Absorbing Composite Materials Based On MXene
74. Preparation Of Dual-network MXene Hydrogel And Its Multifunctionalization
75. Preparation And Properties Of Porous Oriented MXene Composite Aerogels Based On Modified Hyaluronic Acid
76. Surface Functionalization Of Ti3C2Tx MXene And Its Application In Perovskite Solar Cells
77. Research On Microwave Absorbing Performance Of Ti3C2Tx/PANI/CoNi Composite
78. Study Of Preparation,modification And Electrochemical Performance Of Fe2O3@Ti3C2Tx Composites
79. Design,Synthesis And Electrocatalytic Performance Of 3D Porous Ti3C2Tx MXene Supported Metal Composite
80. Preparation And Electrochemical Properties Of Silicon-2D Transition Metal Carbide Composites
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