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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Direct chemical conversion of continuous CVD graphene/graphite films to graphene oxide without exfoliation
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Direct chemical conversion of continuous CVD graphene/graphite films to graphene oxide without exfoliation

机译:将连续CVD石墨烯/石墨膜的直接化学转化为石墨烯氧化物而不进行剥离

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摘要

Graphene oxide (GO) is promising nanomaterial due to its surface versatility by substitution of functional groups and controllable d-spacing. However, most common methods to prepare GO are based on chemical exfoliation by strong oxidation agents forming flake dispersions that are used to form thin films of aggregated flakes. However, because of their discontinuous and amorphous morphology, such GO films have poor thermal, electronic and mechanical properties. Herein, we report a novel and quick method to obtain large and continuous GO multilayers by directly converting a chemical vapor deposited multilayer graphene (CVD-MG) into graphene oxide (CVD-MGO). Our oxidation procedure uses a CVD-MG grown on Nickel (CVD-MG/Ni), combining a gentle acid mixture with the mechanical support of the nickel foil to oxidize the CVD-MG without ripping the basal planes. XPS, EDX, and Raman spectra prove the complete conversion of MG to CVD-MGO. XRD also shows higher crystallinity for CVD-MGO than for Flake-GO film. By reducing the continuous CVD-MGO, we obtain conductive reduced-GO (CVD-rGO), which reaches 80% of the original CVD-MG conductance. Our directly conversion of CVD-MG to CVD-MGO shows great promise for improved transport properties of GO and enhanced performance for filtering and molecule separation. (C) 2019 Elsevier Ltd. All rights reserved.
机译:由于通过替代官能团和可控的D-间距,石墨烯氧化物(GO)是纳米材料的纳米材料。然而,制备GO的最常用方法是基于形成剥落分散体的化学剥离,形成用于形成聚集薄膜的薄膜的薄片分散体。然而,由于它们不连续和无定形的形态,这种GO膜具有差的热,电子和机械性能。在此,我们通过将化学气相沉积的多层石墨烯(CVD-Mg)直接转化为石墨烯(CVD-MgO)来报告一种新颖的和快速的方法来获得大而连续的多层多层。我们的氧化方法使用在镍(CVD-Mg / Ni)上生长的CVD-Mg,将柔和的酸混合物与镍箔的机械支撑物组合,以氧化CVD-MG而不撕开基础架。 XPS,EDX和拉曼光谱证明了MG的完全转化为CVD-MgO。 XRD还显示CVD-MgO的较高结晶度,而不是片状薄膜。通过减少连续的CVD-MgO,我们获得导电还原(CVD-RGO),其达到原始CVD-MG电导的80%。我们直接转化CVD-MG至CVD-MGO对Go的改善运输性能提高了良好的承诺,并提高过滤和分子分离的性能。 (c)2019年elestvier有限公司保留所有权利。

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