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Keyword [sacrificial template]
Result: 21 - 40 | Page: 2 of 3
21. Self-sacrifficial Template Synthesis Of Alloy@Metal-organic Frameworks Core-shell Composite Nanomaterials And Their Properties
22. Preparation And Electrochemical Properties Of Ni/Co-S(Se) Porous Hollow Spheres
23. Template-based Preparation Of Porous Silica Films And Their Applications In Protein Analysis
24. Preparation And Properties Of Carbon Nanotube Based Supercapacitor Electrode Materials
25. Sacrificial Template Fabrication And Applications Of 3D Polypyrrole Hydrogel And V2O3@N-C Anode Material
26. Controlled Synthesis And Electrochemical Performance Of Heteroatom-doped Hierar-chical Porous Carbon Materials
27. Preparation And Application Of Nitrogen-doped Composite Carbon Materials Derived From MOFs
28. Template Sacrificial Synthesis Of Palladium-based Nanocomposites And Their Electrocatalytic Performance In Direct Ethanol Fuel Cells
29. Fabrication of nanoporous silicon oxycarbide materials via a sacrificial template technique
30. Metal-organic Frameworks-based Functional Composite Nanomaterials And Their Properties
31. Preparation And Research Of Superhydrophobic Coatings Based On Long Chain Alkyl Compounds
32. Preparation And Electrochemical Performance Of Transition Metal Hydroxide Composites Based On MOFs
33. Synthesis And Photothermal Properties Investigation Of Hollow Cu7S4 Micro-/Nanoparticles And Its Composites
34. Synthesis And Performance Of Cooper-based Nano-materials For Supercapacitors
35. Controllable Preparation Of Heteroatom-doped Carbon Materials Derived From MOFs
36. Preparation Of FeCo-LDH Activated Permonosulfate-Treated Antibiotics By Sacrificial Template Method
37. Preparation And Electrocatalytic Properties Of ZIFs Derived Porous Carbon Materials
38. Morphology Regulation Of Hollow MoS2 And Its Lithium Ion Storage Performance
39. Preparation And Morphology Control Of Ldhs Materials Growth On MOFs And Their Application In Photocatalysis And Electrocatalysis
40. Structural Tuning Of NiFe Hydrotalcite-based Catalysts And Their Performance In Electrocatalytic Decomposition
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