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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Reversible phase transfer of graphene oxide and its use in the synthesis of graphene-based hybrid materials
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Reversible phase transfer of graphene oxide and its use in the synthesis of graphene-based hybrid materials

机译:氧化石墨烯的可逆相转移及其在石墨烯基杂化材料合成中的应用

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A phase transfer protocol for graphene oxide (GO) was demonstrated with a long chain alkylamine-dodecylamine (DDA) as phase transfer agent. By this method, GO sheets can be easily transferred from water to various low polar organic solvents such as cyclohexane, petroleum ether, kerosene, toluene, carbon tetrachloride, etc. through forming noncovalent DDA-GO hybrids. The reversible phase transfer of GO between aqueous phase and organic phase was also realized through the formation and destruction of a DDA-GO micelle. It was found that ethanol plays a critical role in the phase transfer process, while other experimental parameters, such as pH value and the concentration of GO, do not have an obvious influence on the transfer efficiency over a wide range. A detailed mechanism for the phase transfer is proposed on the basis of experimental observation. With this phase transfer technique, a simple, efficient, and versatile approach is also developed to synthesize a variety of graphene-based metal and alloy hybrids in low-polar organic solvents.
机译:用长链烷基胺-十二胺(DDA)作为相转移剂证明了氧化石墨烯(GO)的相转移方案。通过这种方法,通过形成非共价DDA-GO杂化物,GO片材可以轻松地从水中转移到各种低极性有机溶剂中,例如环己烷,石油醚,煤油,甲苯,四氯化碳等。还通过形成和破坏DDA-GO胶束实现了GO在水相和有机相之间的可逆相转移。发现乙醇在相转移过程中起着至关重要的作用,而其他实验参数(例如pH值和GO的浓度)在较大范围内对转移效率没有明显影响。在实验观察的基础上,提出了一种详细的相转移机理。利用这种相转移技术,还开发了一种简单,高效且用途广泛的方法来在低极性有机溶剂中合成各种石墨烯基金属和合金杂化物。

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