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Nanoparticle–Hydrogel Composites: Concept Design and Applications of These Promising Multi‐Functional Materials

机译:纳米粒子-水凝胶复合材料:这些有前途的多功能材料的概念设计和应用

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摘要

New technologies rely on the development of new materials, and these may simply be the innovative combination of known components. The structural combination of a polymer hydrogel network with a nanoparticle (metals, non‐metals, metal oxides, and polymeric moieties) holds the promise of providing superior functionality to the composite material with applications in diverse fields, including catalysis, electronics, bio‐sensing, drug delivery, nano‐medicine, and environmental remediation. This mixing may result in a synergistic property enhancement of each component: for example, the mechanical strength of the hydrogel and concomitantly decrease aggregation of the nanoparticles. These mutual benefits and the associated potential applications have seen a surge of interest in the past decade from multi‐disciplinary research groups. Recent advances in nanoparticle–hydrogel composites are herein reviewed with a focus on their synthesis, design, potential applications, and the inherent challenges accompanying these exciting materials.
机译:新技术依赖于新材料的开发,而这些技术可能仅仅是已知组件的创新组合。聚合物水凝胶网络与纳米颗粒(金属,非金属,金属氧化物和聚合物部分)的结构组合,有望为复合材料提供卓越的功能,并在催化,电子,生物传感等各个领域得到应用,药物输送,纳米药物和环境修复。这种混合可以导致每种组分的协同性能增强:例如,水凝胶的机械强度并随之降低纳米颗粒的聚集。在过去的十年中,跨学科研究小组对这些共同利益和相关的潜在应用产生了浓厚的兴趣。本文回顾了纳米粒子-水凝胶复合材料的最新进展,重点是其合成,设计,潜在应用以及这些令人兴奋的材料所伴随的固有挑战。

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