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A Graphene Hybrid Material Covalently Functionalized With Porphyrin: Synthesis And Optical Limiting Property

机译:卟啉共价官能化的石墨烯杂化材料:合成和光学限制性能

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摘要

Graphene, a very recent rising star in material science, with an atomically thin, 2D structure that consists of sp~2-hybridized carbons, exhibits remarkable electronic and mechanical properties. Theoretically, the molecules of other allotropic carbon forms can be built from graphene. For example, 1D carbon nanorubes (CNTs) can be built by rolling up graphene with different layers, and 0D fullerenes can be built by wrapping up a single layer of graphene. Graphene (or '2D graphite') is widely used to describe the properties of various carbon-based materials. With the numerous reports of the many exceptional properties and applications of carbon nanotubes and fullerenes, the intensive research of graphene and its use in many nanoelec-tronic and optoelectronic devices, and as a nanometer-scale building block for new nanomaterials, is expected. So far, different device applications, such as field-effect transistors, resonators, transparent anodes, and organic photovoltaic devices have been reported.
机译:石墨烯是材料科学中的一颗新近崛起的新星,具有原子稀薄的2D结构,该结构由sp〜2-杂化碳组成,具有出色的电子和机械性能。从理论上讲,其他同素异形碳分子可以由石墨烯制成。例如,可以通过卷起具有不同层的石墨烯来构建一维碳纳米橡胶(CNT),而可以通过包裹一层石墨烯来构建0D富勒烯。石墨烯(或“ 2D石墨”)被广泛用于描述各种碳​​基材料的特性。关于碳纳米管和富勒烯的许多非凡性能和应用的大量报道,人们对石墨烯及其在许多纳米电子和光电子器件中的用途以及作为新的纳米材料的纳米级构造块的深入研究是值得期待的。迄今为止,已经报道了不同的​​器件应用,例如场效应晶体管,谐振器,透明阳极和有机光伏器件。

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