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由稻壳合成的氧化石墨烯纤维的基本物理性质及潜在应用

Basic physical properties and potential application of graphene oxide fibers synthesized from rice husk.

作者信息

Castro-Ladino J R, Cuy-Hoyos C A, Prías-Barragán J J

机构信息

Grupo de Investigación en Tecnologías Emergentes (GITEM), Universidad de los Llanos, Villavicencio, 500001, Colombia.

Interdisciplinary Institute of Sciences, Doctoral Program in Physical Sciences and Electronic Instrumentation Technology Program at Universidad del Quindío, Armenia, 630004, Colombia.

出版信息

Sci Rep. 2023 Oct 20;13(1):17967. doi: 10.1038/s41598-023-45251-8.

Abstract

The synthesis method and correlation between compositional, vibrational, and electrical properties in graphene oxide fibers (GOF) are presented and discussed here, as well as a potential application through the development of a heater device based on GOF. The GOF samples were synthesized from rice husk (RH), via a thermal decomposition method, employing an automated pyrolysis system with a controlled nitrogen atmosphere, varying carbonization temperature (T) from 773 to 1273 K. The compositional analysis shows peaks in the XPS spectrum associated with C1s and O1s, with presence of hydroxyl and epoxy bridges; the oxide concentration (OC) of samples varied from 0.21 to 0.28, influenced by T. The GOF samples exhibit fiber morphology, vibrational characteristics which are typical of graphene oxide multilayers, and electrical behavior that scales with OC. The electrical response shows that OC decreases and increases electrical conductivity at the polycrystalline phase, possibly attributed to the desorption of some oxides and organic compounds. In addition, physical correlations between OC and its vibrational response showed that decreasing OC increases edge defect density and decreases crystal size as a result of thermal decomposition processes. The correlation between OC and physical properties suggests that by controlling the OC in GOF, it was possible to modify vibrational and electrical properties of great interest in fabrication of advanced electronics; consequently, we show a potential application of GOF samples by developing an electrically controlled heater device.

摘要

本文介绍并讨论了氧化石墨烯纤维(GOF)的合成方法及其成分、振动和电学性质之间的相关性,以及通过开发基于GOF的加热器件实现的潜在应用。GOF样品由稻壳(RH)通过热分解法合成,采用具有可控氮气气氛的自动热解系统,碳化温度(T)在773至1273K之间变化。成分分析表明,XPS光谱中出现了与C1s和O1s相关的峰,存在羟基和环氧桥;样品的氧化物浓度(OC)在0.21至0.28之间变化,受T的影响。GOF样品呈现出纤维形态、典型的氧化石墨烯多层的振动特性以及与OC成比例的电学行为。电学响应表明,在多晶相中,OC降低会增加电导率,这可能归因于一些氧化物和有机化合物的解吸。此外,OC与其振动响应之间的物理相关性表明,由于热分解过程,OC的降低会增加边缘缺陷密度并减小晶体尺寸。OC与物理性质之间的相关性表明,通过控制GOF中的OC,可以改变在先进电子器件制造中具有重要意义的振动和电学性质;因此,我们通过开发一种电控加热器件展示了GOF样品的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7f4/10589357/ef20795d7f52/41598_2023_45251_Fig1_HTML.jpg

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