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聚合物纳米复合材料中工程纳米材料的释放:基体降解的影响。

Release of engineered nanomaterials from polymer nanocomposites: the effect of matrix degradation.

机构信息

Center for Food Safety and Applied Nutrition, United States Food and Drug Administration , 6502 South Archer Road, Bedford Park, Illinois 60501, United States.

出版信息

ACS Appl Mater Interfaces. 2015 Jan 14;7(1):20-39. doi: 10.1021/am5062757. Epub 2014 Dec 22.

Abstract

Polymer nanocomposites-polymer-based materials that incorporate filler elements possessing at least one dimension in the nanometer range-are increasingly being developed for commercial applications ranging from building infrastructure to food packaging to biomedical devices and implants. Despite a wide range of intended applications, it is also important to understand the potential for exposure to these nanofillers, which could be released during routine use or abuse of these materials so that it can be determined whether they pose a risk to human health or the environment. This article is the second of a pair that review what is known about the release of engineered nanomaterials (ENMs) from polymer nanocomposites. Two roughly separate ENM release paradigms are considered in this series: the release of ENMs via passive diffusion, desorption, and dissolution into external liquid media and the release of ENMs assisted by matrix degradation. The present article is focused primarily on the second paradigm and includes a thorough, critical review of the associated body of peer-reviewed literature on ENM release by matrix degradation mechanisms, including photodegradation, thermal decomposition, mechanical wear, and hydrolysis. These release mechanisms may be especially relevant to nanocomposites that are likely to be subjected to weathering, including construction and infrastructural materials, sporting equipment, and materials that might potentially end up in landfills. This review pays particular attention to studies that shed light on specific release mechanisms and synergistic mechanistic relationships. The review concludes with a short section on knowledge gaps and future research needs.

摘要

聚合物纳米复合材料 - 以聚合物为基础的材料,其中包含至少一个维度在纳米范围内的填充元素 - 越来越多地被开发用于商业应用,从建筑基础设施到食品包装,再到生物医学设备和植入物。尽管有广泛的预期应用,但了解这些纳米填充物的潜在暴露风险也很重要,这些纳米填充物可能在这些材料的常规使用或滥用过程中释放出来,以便确定它们是否对人类健康或环境构成风险。本文是一对综述的第二篇,综述了从聚合物纳米复合材料中释放工程纳米材料 (ENM) 的已知情况。在本系列中考虑了两种大致独立的 ENM 释放范例:通过被动扩散、解吸和溶解到外部液体介质中释放 ENM,以及通过基质降解辅助释放 ENM。本文主要关注第二个范例,并对与通过基质降解机制(包括光降解、热分解、机械磨损和水解)释放 ENM 相关的同行评审文献进行了全面、批判性的综述。这些释放机制可能与可能经历风化的纳米复合材料特别相关,包括建筑和基础设施材料、运动器材以及可能最终进入垃圾填埋场的材料。本综述特别关注阐明特定释放机制和协同机制关系的研究。最后一节简要介绍了知识空白和未来的研究需求。

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