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Nanostructured Mesoporous Three-Dimensional Architectures for Catalysis, Energy Storage, and Conversion

机译:用于催化,储能和转化的纳米结构介孔三维结构

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1. Silica sol acts as a nanoglue to create an enormous length and compositional range of nanostructured mesoporous architectures 2. Engineer nanostructured 3-D architectures and composites ... improved performance, especially when high surface areas and high molecular-throughput are required 3. Enhanced electrocatalytic activity (~10x) for fuel oxidation with colloidal-Pt-modified VC-silica composite aerogel 4. Synthesis of highly disordered nanoscale materials can play a role in deciphering what structure?/what function in charge storage 5. Improved rate of electrochemical reactions with high internal free volume of the active material 6. Defects and vacancies play an important role in the electrochemical properties of V_2O_5 gels and perhaps other sol-gel-derived transition metal oxides 7. First rule of glass science: to stabilize a vitreous structure — add more ingredients ... combinatorial/computational efforts may find the elements necessary to stabilize highly disordered structures to Δ/hv/E/P/μ.
机译:1.二氧化硅溶胶充当纳米胶,可创造出巨大的长度和组成范围的纳米结构介孔结构2.设计纳米结构3-D结构和复合材料...改善性能,尤其是在需要高表面积和高分子通量的情况下3。胶体-Pt-修饰的VC-二氧化硅复合气凝胶增强了燃料氧化的电催化活性(约10倍)4.高度无序的纳米级材料的合成可在破译什么结构?/在电荷存储中起什么作用方面发挥作用。5.提高电化学速率活性材料具有较高内部自由体积的反应6.缺陷和空位在V_2O_5凝胶和也许其他溶胶-凝胶衍生的过渡金属氧化物的电化学性质中起着重要作用7.玻璃科学的第一条规则:稳定玻璃体结构-添加更多成分...组合/计算工作可能会找到稳定高度无序结构所需的要素es至Δ/ hv / E / P /μ。

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