首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Multi-colored hollow carbon-containing titania nanoshells for anti-counterfeiting applications!
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Multi-colored hollow carbon-containing titania nanoshells for anti-counterfeiting applications!

机译:多彩色中空碳的二氧化钛纳米孔用于防伪造应用!

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While titania and carbon are conventionally perceived as white and black materials, here we show that their combination in the form of composite hollow nanoshells can display striking colors with considerably high contrast through resonant Mie scattering. Our unique design utilizes hollow nanostructures to produce the color by minimizing random multiple scattering and the incorporated carbon species to act as an internal black background to suppress multiple scattering and enhance the color contrast. Synthesized through a simple sol-gel process followed by high-temperature carbonization, these hollow carbon-containing titania (C-TiO2) nanoshells can exhibit variable bright colors from purple to blue and green by controlling their diameter. They can be conveniently used as alternative pigments in many color-related applications, with the advantages of high chemical and optical stability and low toxicity that are associated with titania and carbon materials and the structural coloration mechanism. In addition, as the visible Mie scattering responds rapidly and reversibly to changes in the surrounding medium, these nanoshells may also serve as active color components for many applications that require dynamic color switching, such as signage and displays, colorimetric sensors and detectors, and anti-counterfeiting devices.
机译:虽然二氧化钛和碳通常被视为白色和黑色材料,但在这里,我们表明它们以复合空心纳米孔的形式的组合可以通过共振MIE散射显示出相当高的对比度的醒目色彩。我们独特的设计利用中空纳米结构通过最小化随机多次散射和掺入的碳物种来产生颜色,以充当内部黑色背景以抑制多个散射并增强颜色对比度。通过简单的溶胶工艺合成,然后通过高温碳化,这些含中空碳的二氧化钛(C-TiO 2)纳米液通过控制其直径可以表现出从紫色到蓝色和绿色的可变亮色颜色。它们可以方便地用作许多颜色相关的应用中的替代颜料,具有高化学和光学稳定性和低毒性的优点,与二氧化钛和碳材料以及结构着色机构相关。另外,由于可见的MIE散射迅速响应并且可逆地变为周围介质的变化,因此这些纳米片也可以用作需要动态颜色切换的许多应用的主动颜色组件,例如标牌和显示器,比色传感器和探测器,以及反-Counterfeiting设备。

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