{"title":"The Role of Graphene in Flame Retardancy of Polymeric Materials: Recent Advances","authors":"G. Malucelli","doi":"10.2174/2452273202666180706145545","DOIUrl":null,"url":null,"abstract":"Background: From its discovery, graphene has become a very fascinating nanomaterial, thanks to its structure that determines peculiar (and unique) mechanical, electrical and thermal properties. Thus, graphene has stimulated and is still motivating several researchers to widen its potentialities that are currently being exploited in different application sectors, comprising catalysis and energy, nanoelectronics, quantum physics and the design and manufacturing of advanced nanocomposite materials and biomaterials. Being a carbon source, already organized in a well-ordered morphology, graphene is nowadays starting to experience a different application, i.e. in the fire retardancy of polymers, foams and textiles, often in combination with other flame retardant additives or nanofillers, with which graphene can often act in a synergistic way. In fact, it is well reported in the scientific literature that graphene and its derivatives can play a key role either in slowing down the flame propagation or even in providing self-extinction to the thermoplastic or thermosetting matrices, where the nanofiller is incorporated in; furthermore, by exploiting surface engineered approaches, it is possible to design very effective flame retardant coatings on textile substrates. Objective: This paper aims at reviewing the current state-of-the-art about the use of graphene and its derivatives as efficient flame retardant additives for different polymeric materials, highlighting the current limitations/achievements and discussing some possible future developments. A R T I C L E H I S T O R Y Received: February 13, 2018 Revised: May 19, 2018 Accepted: June 14, 2018 DOI: 10.2174/2452273202666180706145545","PeriodicalId":294135,"journal":{"name":"Current Graphene Science","volume":"1 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2018-05-31","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"6","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Current Graphene Science","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.2174/2452273202666180706145545","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 6
Abstract
Background: From its discovery, graphene has become a very fascinating nanomaterial, thanks to its structure that determines peculiar (and unique) mechanical, electrical and thermal properties. Thus, graphene has stimulated and is still motivating several researchers to widen its potentialities that are currently being exploited in different application sectors, comprising catalysis and energy, nanoelectronics, quantum physics and the design and manufacturing of advanced nanocomposite materials and biomaterials. Being a carbon source, already organized in a well-ordered morphology, graphene is nowadays starting to experience a different application, i.e. in the fire retardancy of polymers, foams and textiles, often in combination with other flame retardant additives or nanofillers, with which graphene can often act in a synergistic way. In fact, it is well reported in the scientific literature that graphene and its derivatives can play a key role either in slowing down the flame propagation or even in providing self-extinction to the thermoplastic or thermosetting matrices, where the nanofiller is incorporated in; furthermore, by exploiting surface engineered approaches, it is possible to design very effective flame retardant coatings on textile substrates. Objective: This paper aims at reviewing the current state-of-the-art about the use of graphene and its derivatives as efficient flame retardant additives for different polymeric materials, highlighting the current limitations/achievements and discussing some possible future developments. A R T I C L E H I S T O R Y Received: February 13, 2018 Revised: May 19, 2018 Accepted: June 14, 2018 DOI: 10.2174/2452273202666180706145545
背景:自从石墨烯被发现以来,它已经成为一种非常迷人的纳米材料,这要归功于它的结构决定了它特殊的(和独特的)机械、电和热性能。因此,石墨烯已经并仍在激励着一些研究人员扩大其在不同应用领域的潜力,包括催化和能源、纳米电子学、量子物理以及先进纳米复合材料和生物材料的设计和制造。作为一种碳源,石墨烯已经组织成有序的形态,现在开始经历不同的应用,即在聚合物,泡沫和纺织品的阻燃中,通常与其他阻燃添加剂或纳米填料结合,石墨烯通常可以协同作用。事实上,在科学文献中有很好的报道,石墨烯及其衍生物可以在减缓火焰传播方面发挥关键作用,甚至可以在热塑性或热固性基质中提供自熄,其中加入了纳米填料;此外,通过利用表面工程方法,可以在纺织基材上设计非常有效的阻燃涂料。目的:综述了石墨烯及其衍生物在不同高分子材料中作为高效阻燃添加剂的最新研究进展,强调了目前的局限性/成就,并讨论了一些可能的未来发展。A R T I C L E H I S T O R Y收稿日期:2018年2月13日修稿日期:2018年5月19日收稿日期:2018年6月14日DOI: 10.2174/2452273202666180706145545