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天然与可持续聚合物衍生物的等离子体表面工程及其潜在应用

Plasma Surface Engineering of Natural and Sustainable Polymeric Derivatives and Their Potential Applications.

作者信息

Pillai Renjith Rajan, Thomas Vinoy

机构信息

Department of Material Science and Engineering, The University of Alabama at Birmingham, Birmingham, AL 35294, USA.

出版信息

Polymers (Basel). 2023 Jan 12;15(2):400. doi: 10.3390/polym15020400.

Abstract

Recently, natural as well as synthetic polymers have been receiving significant attention as candidates to replace non-renewable materials. With the exponential developments in the world each day, the collateral damage to the environment is incessant. Increased demands for reducing pollution and energy consumption are the driving force behind the research related to surface-modified natural fibers (NFs), polymers, and various derivatives of them such as natural-fiber-reinforced polymer composites. Natural fibers have received special attention for industrial applications due to their favorable characteristics, such as low cost, abundance, light weight, and biodegradable nature. Even though NFs offer many potential applications, they still face some challenges in terms of durability, strength, and processing. Many of these have been addressed by various surface modification methodologies and compositing with polymers. Among different surface treatment strategies, low-temperature plasma (LTP) surface treatment has recently received special attention for tailoring surface properties of different materials, including NFs and synthetic polymers, without affecting any of the bulk properties of these materials. Hence, it is very important to get an overview of the latest developments in this field. The present article attempts to give an overview of different materials such as NFs, synthetic polymers, and composites. Special attention was placed on the low-temperature plasma-based surface engineering of these materials for diverse applications, which include but are not limited to environmental remediation, packaging, biomedical devices, and sensor development.

摘要

近年来,天然聚合物和合成聚合物作为替代不可再生材料的候选材料受到了广泛关注。随着世界每天呈指数级发展,对环境的附带损害也在不断增加。减少污染和能源消耗的需求不断增加,这是与表面改性天然纤维(NFs)、聚合物及其各种衍生物(如天然纤维增强聚合物复合材料)相关研究的驱动力。天然纤维因其成本低、储量丰富、重量轻和可生物降解等优良特性而在工业应用中受到特别关注。尽管天然纤维有许多潜在应用,但它们在耐久性、强度和加工方面仍面临一些挑战。其中许多问题已通过各种表面改性方法以及与聚合物复合得到解决。在不同的表面处理策略中,低温等离子体(LTP)表面处理最近因能在不影响材料任何本体性能的情况下调整包括天然纤维和合成聚合物在内的不同材料的表面性能而受到特别关注。因此,全面了解该领域的最新发展非常重要。本文试图概述天然纤维、合成聚合物和复合材料等不同材料。特别关注了基于低温等离子体的这些材料的表面工程在各种应用中的情况,这些应用包括但不限于环境修复、包装、生物医学设备和传感器开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26cf/9863272/074822fbd99e/polymers-15-00400-g001.jpg

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