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Dual-enhanced photothermal conversion properties of reduced graphene oxide-coated gold superparticles for light-triggered acoustic and thermal theranostics

机译:Dual-enhanced光热光谱分析转换属性石墨烯敷氧化物减少黄金superparticles光触发声学和热开展

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摘要

A rational design of highly efficient photothermal agents that possess excellent light-to-heat conversion properties is a fascinating topic in nanotheranostics. Herein, we present a facile route to fabricate size-tunable reduced graphene oxide (rGO)-coated gold superparticles (rGO-GSPs) and demonstrate their dual-enhanced photothermal conversion properties for photoacoustic imaging and photothermal therapy. For the first time, graphene oxide (GO) was directly used as an emulsifying agent for the preparation of gold superparticles (GSPs) with near-infrared absorption by the emulsion method. Moreover, GO spontaneously deposited on the surface of GSPs could also act as the precursor of the rGO shell. Importantly, both the plasmonic coupling of the self-assembled gold nanoparticles and the interaction between GSPs and rGO endow rGO-GSPs with enhanced photothermal conversion properties, allowing rGO-GSPs to be used for sensitive photoacoustic detection and efficient photothermal ablation of tumours in vivo. This study provides a facile approach to prepare colloidal superparticles-graphene hybrid nanostructures and will pave the way toward the design and optimization of photothermal nanomaterials with improved properties for theranostic applications.
机译:一个设计合理高效的光热光谱分析代理,拥有优秀的light-to-heat转换的属性是一个令人着迷的话题nanotheranostics。制造分散相降低石墨烯尺寸氧化(rGO)涂布黄金superparticles (rGO-GSPs)并展示其dual-enhanced光热光谱分析转换为光声成像特性和光照疗法。石墨烯氧化物直接用作(去)乳化剂制备的黄金与近红外superparticles (gsp)吸收的乳液的方法。自发沉积在gsp时的表面也可以作为rGO壳的前兆。重要的是,电浆的耦合和自组装金纳米粒子gsp和rGO赋予rGO-GSPs之间的交互与提高光热光谱分析转换属性,允许rGO-GSPs用于敏感光声检测和高效光热光谱分析体内肿瘤消融。研究提供了一种简单的方法来准备胶体superparticles-graphene混合纳米结构,并将向铺平了道路光热光谱分析的设计和优化纳米材料与改进的属性theranostic应用程序。

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