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Gold Nanospheres Dispersed Light Responsive Epoxy Vitrimers

机译:金纳米球分散光响应性环氧微晶玻璃

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摘要

Vitrimers represent a new class of smart materials. They are covalently crosslinked like thermosets, yet they can be reprocessed like thermoplastics. The underlying mechanism is the rapid exchange reactions which form new bonds while breaking the old ones. So far, heating is the most widely used stimulus to activate the exchange reaction. Compared to heating, light not only is much more convenient to achieve remote and regional control, but can also offer fast healing. Gold nanospheres are excellent photothermal agents, but they are difficult to disperse into vitrimers as they easily aggregate. In this paper, we use polydopamine to prepare gold nanospheres. The resultant polydopamine-coated gold nanospheres (GNS) can be well dispersed into epoxy vitrimers, endowing epoxy vitrimers with light responsivity. The composites can be reshaped permanently and temporarily with light at different intensity. Efficient surface patterning and healing are also demonstrated.
机译:微晶陶瓷代表了新型的智能材料。它们像热固性塑料一样被共价交联,但它们却可以像热塑性塑料一样进行再加工。潜在的机制是快速的交换反应,形成新的债券,同时打破旧的债券。到目前为止,加热是激活交换反应最广泛使用的刺激。与加热相比,光不仅更方便实现远程和区域控制,而且还可以提供快速治愈的能力。金纳米球是出色的光热剂,但由于它们易于聚集,因此很难分散到三聚体中。在本文中,我们使用聚多巴胺制备金纳米球。所得的聚多巴胺涂层金纳米球(GNS)可以很好地分散到环氧微晶玻璃中,从而赋予环氧微晶玻璃以光响应性。可以用不同强度的光对复合材料进行永久性和暂时性的重塑。还证明了有效的表面构图和修复。

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