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Space-Selective Fabrication of Light-Emitting Carbon Dots in Polymer Films Using Electron-Beam-Induced Chemical Reactions

机译:电子束诱导的化学反应在聚合物膜中的碳点的空间选择性制备

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Nanocarbon-based materials have excellent properties, including high electrical conductivity as well as charity-dependent optical absorption and luminescence; therefore, the materials are promising in applications for nanoelectric devices, nanophotonics, and so on. Carbon dots (CDs) are one of the carbon materials recently fabricated. Optical properties of CDs have been reported to be similar to those of polycyclic aromatic hydrocarbons (PAHs). For this reason, the CDs are considered to be composed of PAH. Synthesis of CDs has previously been accomplished through hydrothermal synthesis and microwave irradiation. These methods require a long synthesis time, and the processes involve multiple steps. In this study, we developed a fabrication method of CDs in simple and spatially selective ways, by using radical reactions in an organic polymer film with focused electron-beam irradiation. We investigated various organic polymers as reaction materials and found that polystyrene has a higher efficiency for CD formation than other organic polymers investigated. Absorption, photoluminescence, and Raman scattering properties of the electron-beam-irradiated sample were in good agreement with those reported for the CDs. The technique developed in this study is promising for fabricating light-emitting CDs and photonic crystals in a simple and flexible manner.
机译:纳米碳基材料具有出色的性能,包括高电导率以及与慈善相关的光学吸收和发光;因此,该材料在纳米电子器件,纳米光子学等应用中很有前途。碳点(CD)是最近制造的碳材料之一。据报道,CD的光学性质类似于多环芳烃(PAH)。因此,CD被认为是由PAH组成的。 CD的合成以前是通过水热合成和微波辐射完成的。这些方法需要较长的合成时间,并且过程涉及多个步骤。在这项研究中,我们通过在有机聚合物薄膜中通过自由基电子束辐照进行自由基反应,开发了一种以简单且空间选择性的方式制造CD的方法。我们研究了各种有机聚合物作为反应材料,发现聚苯乙烯比其他研究的有机聚合物具有更高的CD形成效率。电子束辐照样品的吸收,光致发光和拉曼散射特性与CD所报道的一致。这项研究中开发的技术有望以简单灵活的方式制造发光CD和光子晶体。

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