T. F. Silva, G. P. M. Souza, G. F. Morgado, Yves Nicolau Wearn, A. P. F. Albers, E. Quinteiro, F. R. Passador
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引用次数: 7
Abstract
Corresponding Author: Thais Ferreira da Silva Federal University of São Paulo (UNIFESP) (Polymer and Biopolymer Technology Laboratory (TecPBio), 330 Talim St., São José dos Campos, SP, Brazil, 12231280), Brazil Email: thais.ferret@hotmail.com Abstract: The development of polymeric nanocomposites using clay minerals as a Nano filler is of great interest to researchers and industry. Many clay minerals are used to modify the properties of the polymers; this strategy improves the thermal and mechanical performance and changes the surface finishing and the processing characteristics. The Attapulgite (ATP), which is a clay mineral of the hydrated magnesium silicates family, has gained prominence in recent years because it combines low cost and high performance. It has a large surface area, strong absorption capacity superior to any other natural mineral, good mechanical resistance and thermal stability. These properties make ATP an ideal candidate for reinforcing polymeric materials. Different approaches and emerging technologies have been applied to improve the thermal and mechanical properties of polymer/ATP nanocomposites which can extend the different chemical treatments used in ATP. Therefore, this review article presents the latest advances related to the use of ATP in the development of polymeric nanocomposites, showing future perspectives for new trends in ATP applications. In general, ATP modifies the mechanical properties of polymers, either in the natural or modified state. And is a good alternative for the replacement of lamellar clays such as montmorillonites with the advantage of having a lower cost and a wide world market to be explored, that which drive new trends in applications for ATP, such as flame retardant of cotton fabrics, dye adsorption, hydrogel membranes for wound dressing, sustainable packaging and fuel cell applications.
通讯作者:泰国Ferreira da Silva 圣保罗联邦大学(UNIFESP)(聚合物和生物聚合物技术实验室(TecPBio), 330 Talim St., s o jos dos Campos, SP,巴西,12231280),巴西电子邮件:thais.ferret@hotmail.com摘要:以粘土矿物为纳米填料的聚合物纳米复合材料的发展引起了研究人员和工业界的广泛关注。许多粘土矿物被用来改变聚合物的性质;该策略提高了热性能和机械性能,并改变了表面光洁度和加工特性。凹凸棒石(ATP)是水合硅酸镁家族的一种粘土矿物,近年来因其低成本和高性能而备受关注。它具有大的表面积,强的吸收能力优于任何其他天然矿物,良好的机械阻力和热稳定性。这些特性使ATP成为增强高分子材料的理想候选材料。不同的方法和新兴技术已被应用于改善聚合物/ATP纳米复合材料的热性能和力学性能,这可以扩展ATP中不同的化学处理方法。因此,本文综述了ATP在高分子纳米复合材料中应用的最新进展,并对其应用的新趋势进行了展望。一般来说,无论是在天然状态还是在改性状态下,ATP都能改变聚合物的机械性能。它是替代层状粘土(如蒙脱石)的一个很好的替代品,具有成本较低和广阔的世界市场有待探索的优势,这推动了ATP应用的新趋势,如棉织物的阻燃剂、染料吸附、伤口敷料的水凝胶膜、可持续包装和燃料电池应用。