Suppr超能文献

含氟聚合物的纳米含能复合材料:从粉末到结构的转变。

Nanoenergetic Composites with Fluoropolymers: Transition from Powders to Structures.

作者信息

Pisharath Sreekumar, Ong Yew Jin, Hng Huey Hoon

机构信息

Emerging nanoscience Research Institute (EnRI), Nanyang Technological University, Singapore 639798, Singapore.

School of Materials Science and Engineering, Nanyang Technological University, Singapore 639798, Singapore.

出版信息

Molecules. 2022 Oct 5;27(19):6598. doi: 10.3390/molecules27196598.

Abstract

Over the years, nanoenergetic materials have attracted enormous research interest due to their overall better combustion characteristics compared to their micron-sized counterparts. Aluminum, boron, and their respective alloys are the most extensively studied nanoenergetic materials. The majority of the research work related to this topic is confined to the respective powders. However, for practical applications, the powders need to be consolidated into reactive structures. Processing the nanoenergetic materials with polymeric binders to prepare structured composites is a possible route for the conversion of powders to structures. Most of the binders, including the energetic ones, when mixed with nanoenergetic materials even in small quantities, adversely affects the ignitability and combustion performance of the corresponding composites. The passivating effect induced by the polymeric binder is considered unfavorable for ignitability. Fluoropolymers, with their ability to induce pre-ignition reactions with the nascent oxide shell around aluminum and boron, are recognized to sustain the ignitability of the composites. Initial research efforts have been focused on surface functionalizing approaches using fluoropolymers to activate them further for energy release, and to improve the safety and storage properties. With the combined advent of more advanced chemistry and manufacturing techniques, fluoropolymers are recently being investigated as binders to process nanoenergetic materials to reactive structures. This review focuses on the major research developments in this area that have significantly assisted in the transitioning of nanoenergetic powders to structures using fluoropolymers as binders.

摘要

多年来,纳米含能材料因其整体燃烧特性优于微米级同类材料而吸引了大量研究兴趣。铝、硼及其各自的合金是研究最为广泛的纳米含能材料。与该主题相关的大多数研究工作都局限于各自的粉末。然而,对于实际应用而言,需要将这些粉末固结为反应性结构。用聚合物粘结剂加工纳米含能材料以制备结构化复合材料是将粉末转化为结构的一种可行途径。大多数粘结剂,包括含能粘结剂,即使与纳米含能材料少量混合,也会对相应复合材料的可燃性和燃烧性能产生不利影响。聚合物粘结剂引起的钝化作用被认为对可燃性不利。含氟聚合物能够与铝和硼周围新生的氧化壳引发预点火反应,因此被认为能够维持复合材料的可燃性。最初的研究工作集中在使用含氟聚合物的表面功能化方法上,以进一步激活它们以释放能量,并改善安全性和储存性能。随着更先进的化学和制造技术的共同出现,含氟聚合物最近正被研究用作粘结剂来将纳米含能材料加工成反应性结构。本综述重点关注该领域的主要研究进展,这些进展显著推动了使用含氟聚合物作为粘结剂将纳米含能粉末转化为结构的过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2825/9572529/a079eb023b08/molecules-27-06598-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验