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Anisotropic structural color particles from colloidal phase separation

机译:来自胶体相分离的各向异性结构颜色颗粒

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Structural color materials have been studied for decades because of their fascinating properties. Effects in this area are the trend to develop functional structural color materials with new components, structures, or morphologies for different applications. In this study, we found that the coassembled graphene oxide (GO) and colloid nanoparticles in droplets could form component phase separations, and thus, previously unknown anisotropic structural color particles (SCPs) with hemispherical colloidal crystal cluster and oblate GO component could be achieved. The anisotropic SCPs, as well as their inverse opal hydrogel derivatives, were endowed with brilliant structural colors and controllable capabilities of fixation, location, orientation, and even responsiveness due to their specific structure, morphology, and components. We have also demonstrated that the anisotropic hydrogel SCPs with these features were ideal candidates for dynamic cell monitoring and sensing. These properties indicate that the anisotropic SCPs and their derivatives have huge potential values in biomedical areas.
机译:由于其迷人的性质,已经研究了结构色素的几十年。该领域的效果是开发功能性结构颜色材料的趋势,具有用于不同应用的新组分,结构或形态。在这项研究中,我们发现液滴中的配合石墨烯氧化物(GO)和胶体纳米颗粒可以形成组分分离,因此,可以实现具有半球形胶体晶体簇和扁平组分的先前未知的各向异性结构颜色颗粒(SCP)。各向异性SCP以及其反蛋白石水凝胶衍生物,由于其特定的结构,形态和部件而赋予了辉煌的结构颜色和可控的固定,位置,方向,甚至反应能力。我们还表明,具有这些特征的各向异性水凝胶SCP是用于动态电池监测和传感的理想候选者。这些性质表明各向异性SCP及其衍生物在生物医学领域具有巨大的潜在价值。

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