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Continuous 'Snowing' Thermotherapeutic Graphene

机译:连续的'下雪'热疗石墨烯

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Abstract Finding the best applications of graphene, and the continuous and scalable preparation of graphene with high quality and high purity, are still two major challenges. Herein, a “pulse‐etched” microwave‐induced “snowing” (PEMIS) process is developed for continuous and scalable preparation of high‐quality and high‐purity graphene directly in the gas phase, which is found to have excellent thermotherapeutic effects. The obtained graphene exhibits small size (≈180 nm), high quality, low oxygen content, and high purity, together with a high gas–solid conversion efficiency of ≈10.46%. Considering the intrinsic characteristics of this high‐purity and small‐sized biocompatible graphene, in particular the low‐frequency microwave absorption property as well as the good thermal transformation ability, a graphene‐based combination therapeutic system is demonstrated for microwave thermal therapy (MTT) for the first time, exhibiting a high tumor ablation rate of ≈86.7%. This is different from the principle of ions vibrating in a confined space used by current MTT sensitization materials. Not limited to this application, it is foreseen that this PEMIS‐based high‐quality graphene will allow the search for further suitable applications of graphene.
机译:摘要发现石墨烯的最佳应用,以及具有高质量和高纯度的石墨烯的连续和可扩展制备,仍然存在两个主要挑战。在此,开发了一种“脉冲蚀刻的”微波诱导的“降雪”(PEMIS)方法,用于直接在气相中连续和可扩展的高质量和高纯石墨烯制备,这被发现具有优异的热处理效果。所得石墨烯具有小尺寸(≈180nm),高质量,低氧含量和高纯度,以及高气体 - 固体转化效率为≈10.46%。考虑到这种高纯度和小型生物相容性石墨烯的固有特性,特别是低频微波吸收性以及良好的热转化能力,对微波热疗(MTT)的基于石墨烯的组合治疗系统证明了基于石墨烯的组合治疗系统(MTT)首次,表现出高肿瘤消融率为≈86.7%。这与在电流MTT敏化材料使用的狭窄空间中振动的离子原理不同。不限于本申请,预计此基于PEMIS的高质量石墨烯将允许搜索石墨烯的进一步应用。

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