纤维素纳米晶膜的合成与计量

Cong Cao, Dongsheng Zhao, Ying Tang, Tingting Peng
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引用次数: 0

摘要

纤维素纳米晶体(CNC)是近年来备受关注的一种新兴纳米材料。它是丰富的、可持续的、可再生的和可生物降解的。它们具有传统纤维素衍生材料无法满足的独特化学和机械特性,例如高长径比、低密度、高刚度、高抗拉强度和非常低的热膨胀系数。本文主要研究了CNC薄膜的形成和表征,以及随后用原子力显微镜(AFM)对CNC薄膜厚度的可追溯测量。AFM由一系列经过认证的参考物质校准,因此测量值可以追溯到激光波长参考(仪表定义)。结果表明,通过自旋涂层在金表面物理吸附胺端硫醇层,可以形成表面带负电荷的CNC薄膜。CNC膜厚度可以通过CNC溶液浓度来控制。深入了解数控计量是进一步研究数控化学和机械特性及其应用的基础。
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Synthesis and metrology of cellulose nanocrystal films
Cellulose nanocrystal (CNC) is an emerging nanomaterial that has drawn increasing attention recently. It is abundant, sustainable, renewable, and biodegradable. They have unique chemical and mechanical characteristics that cannot be met by traditional cellulose-derived materials, such as high aspect ratio, low density, high stiffness, high tensile strength and very low coefficients of thermal expansion. This paper is focused on the formation and characterization of CNC films and the subsequent traceable metrology of CNC film thickness by atomic force microscopy (AFM). The AFM is calibrated by a series of certified reference materials, and thus the measured values can be traceable to the laser wavelength reference (meter definition). Results show that CNC films with negative charges on surface can be formed via physisorption to an amine-terminated thiol layer on gold through spin coating. The CNC film thickness can be controlled by CNC solution concentration. A thorough understanding of CNC metrology is the foundation for further study of CNC chemical and mechanical characteristics and applications.
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