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Corrosion-Mediated Self-Assembly (CMSA): Direct Writing Towards Sculpturing of 3D Tunable Functional Nanostructures

机译:腐蚀介导的自组装(CMSA):直接书写指向3D可调谐功能纳米结构的雕刻

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摘要

Inexpensive and readily available metal foils have been extracted and sculptured into nanocomposites without the expense of applied energy. The unwanted corrosion phenomenon has been contrarily utilized to realize desirable 3D nanostructures through a corrosion-mediated self-assembly (CMSA) method, which is unattainable by conventional 2D patterning routes. By virtue of electrochemical dissolution/redeposition initiated by brass corrosion, ionic derivatives (Zn2+ and Cu2+) are continuously supplied and seized by etchant ions (PO43-) to self-assemble into well-defined nanocomposites. Beyond 3D geometry patterning, CMSA enables arbitrarily tailoring of structures and chemical compositions with in situ multiphase amalgamation of hybrid materials, which improves homogeneity and thus mitigates phase separation issues. Importantly, the CMSA technique is demonstrated on transition metals for functional photocatalytic applications.
机译:廉价且易于获得的金属箔已被提取并雕刻成纳米复合材料,而无需消耗任何能量。相反,有害的腐蚀现象已被用于通过腐蚀介导的自组装(CMSA)方法实现理想的3D纳米结构,而这是常规2D图案化工艺无法实现的。通过黄铜腐蚀引发的电化学溶解/再沉积,可连续提供离子衍生物(Zn2 +和Cu2 +)并通过蚀刻剂离子(PO43-)捕获,以自组装成定义明确的纳米复合材料。除了3D几何图形之外,CMSA还可以通过混合材料的原位多相合并任意定制结构和化学成分,从而提高了同质性,从而减轻了相分离问题。重要的是,在用于功能性光催化应用的过渡金属上展示了CMSA技术。

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