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羧甲基纤维素大分子作为各向异性纳米金的发生器用于催化性能。

Carboxymethyl cellulose macromolecules as generator of anisotropic nanogold for catalytic performance.

机构信息

Pretreatment and Finishing of Cellulosic Fibers, Textile Research Division, National Research Centre, Scopus affiliation ID 60014618, El Buhouth St., Dokki, Cairo, 12622, Egypt.

Chemistry Department, Faculty of Science, Helwan University, Ain-Helwan, Cairo, 11795, Egypt.

出版信息

Int J Biol Macromol. 2018 May;111:999-1009. doi: 10.1016/j.ijbiomac.2018.01.111. Epub 2018 Jan 31.

Abstract

Morphological structure and size of Au nanoparticles (AuNPs) are basically affected on their chemical reactivity which are influenced by preparation method due to including different materials and may cause some interferences in their reactivity. Hence, current work focused on preparation of anisotropic AuNPs with astonishing catalytic reactivity, using carboxymethyl cellulose (CMC) macromolecules, as generator and shape conductor. Geometrical shape and size distribution of the so-obtained AuNPs were found to be dependent on CMC concentration and addition of alkali. By using 2 g/L CMC, sharp and quite intense SPR peak was observed for the spherical AuNPs with size of 8.8-14.0 nm. While, agglomerated Au particles with larger size (432.4-488.3 nm) showed broader Surface Plasmon Resonance peak in case of alkali addition. Using lower concentration of CMC (1 g/L) resulted in formation of heterogeneous shapes (nano-prism and nano-hexagonal). The small sized Au nano-spheres were shown to exhibit the highest catalytic action. The p-nitro-aniline was fully reduced to p-amino-aniline in only 1 min and achieved rate constant of 649.2 × 10 s. This work offers a unique, simple and green methodology to prepare catalytically active anisotropic AuNPs which could be highly applicable in different purposes.

摘要

金纳米粒子(AuNPs)的形态结构和尺寸基本受到其化学活性的影响,而化学活性又受到制备方法的影响,因为不同的材料可能会导致其活性发生一些干扰。因此,目前的工作重点是使用羧甲基纤维素(CMC)大分子作为发生器和形状导体,制备具有惊人催化活性的各向异性 AuNPs。所得到的 AuNPs 的几何形状和尺寸分布发现取决于 CMC 浓度和碱的添加。使用 2g/L 的 CMC,观察到尺寸为 8.8-14.0nm 的球形 AuNPs 具有尖锐且强烈的 SPR 峰。然而,在添加碱的情况下,较大尺寸(432.4-488.3nm)的团聚 Au 颗粒显示出较宽的表面等离子体共振峰。使用较低浓度的 CMC(1g/L)会导致形成不均匀的形状(纳米棱镜和纳米六方)。较小尺寸的 Au 纳米球显示出最高的催化活性。对硝基苯胺在 1 分钟内完全还原为对氨基苯胺,其速率常数为 649.2×10s。这项工作提供了一种独特、简单和绿色的方法来制备具有催化活性的各向异性 AuNPs,可广泛应用于不同领域。

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