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Integration of inorganic nanostructures with polydopamine-derived carbon: tunable morphologies and versatile applications

机译:无机纳米结构的集成polydopamine-derived碳:可调形态获得了广泛的应用,

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摘要

Polydopamine (PDA), a mussel adhesive-inspired biomimetic polymer, has attracted tremendous attention owing to its extremely versatile adhesion properties, facile aqueous coating process, capability of self-assembly to form nanostructures, and abundant surface functional groups for secondary modification. PDA is also a fantastic carbon source because it gives nitrogen (N)-doped graphite-like carbon in high yield, and the carbonized PDA (C-PDA) thin coatings have similar properties to those of N-doped multilayered graphene, i.e., they exhibit high electrical conductivity, and good electrochemical and mechanical properties. In comparison with other carbon sources, an outstanding feature of PDA lies in its ease of integration with inorganic nanostructures and capability for easy tailoring the structure and morphology of the resultant composite nanostructures. In this article, different routes for the preparation of C-PDA-based composite nanostructures, such as carbon/metal oxide and carbon/Si hollow, mesoporous, coreshell, yolk-shell nanostructures, are introduced with typical examples. The structures, morphologies and properties of the C-PDA-based composite nanostructures are also reviewed, and their potential applications in various engineering fields, such as energy storage, solar water splitting, flexible electronics, catalysis, sensing and environmental engineering, are highlighted. Finally a future outlook for this fascinating composite-nanostructure enabler is also presented.
机译:贻贝adhesive-inspired Polydopamine (PDA)仿生聚合物,吸引了巨大的由于其用途极其广泛关注附着力属性,灵巧的水性涂层过程中,自组装形成的能力表面纳米结构,和丰富的功能组二次修改。神奇的氮碳源,因为这给了(N)再版graphite-like碳高产量,和碳化PDA (C-PDA)薄涂层类似属性的n型多层石墨烯,即他们表现出高电导率和良好的电化学和机械性能。其他碳源,一个突出的特点PDA在于其易于集成无机纳米结构和功能简单裁剪的结构和形态合成复合纳米结构。篇文章,不同的路线的准备C-PDA-based复合纳米结构,如碳/金属氧化物和碳/硅空心,介孔、coreshell yolk-shell纳米结构,介绍了典型的例子。的结构、形态和性质C-PDA-based复合纳米结构也了,他们的潜在的应用各种工程领域,如能源存储、太阳能水分裂、灵活电子、催化、传感和环境工程,突出显示。这个迷人的前景composite-nanostructure推动者也提出了。

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