Green Synthesis of Metal-Organic Biohybrid (Mob) Nanomaterials

M. DeCoster, Tasneem Khasru, Kelly McMahen, Navya Uppu
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Abstract

Green synthesis of nanomaterials endeavors to reduce the use of high energy methods with those that may include lower temperatures and pressures, use of natural products, and bottom-up self-assembly. Here we describe the generation of metal-organic biohybrids (MOBs) with nanoscale features synthesized at physiological (37°C) and room temperature (25°C). These MOBs utilized the naturally occurring amino acid dimer cystine as the biological component, and a series of metals, including copper, silver, and cobalt. The copper- and silver- based nanomaterials generated were distinct in size and shape. Copper formed elongated high-aspect ratio structures which we have named CuHARS. In contrast, the self-assembly of cystine and silver formed nanoparticles which we designate as AgCysNPs, and cobalt formed particles which we designate as CoMOBs. Both cobalt and silver could be combined with copper in the same reaction vessel to carry out green synthesis of different nanomaterials simultaneously. Post-synthesis the polarization of light by CuHARS provided one measure to distinguish the size and shape of different MOBs generated simultaneously.
金属-有机-生物杂化(Mob)纳米材料的绿色合成
纳米材料的绿色合成努力减少高能量方法的使用,这些方法可能包括降低温度和压力,使用天然产物,以及自下而上的自组装。本文描述了在生理温度(37°C)和室温(25°C)下合成的具有纳米级特征的金属-有机生物杂合体(MOBs)的生成。这些MOBs利用天然存在的氨基酸二聚体胱氨酸作为生物成分,以及一系列金属,包括铜、银和钴。制备的铜基和银基纳米材料在尺寸和形状上有明显的差异。铜形成了细长的高纵横比结构,我们称之为CuHARS。相比之下,胱氨酸和银的自组装形成了纳米粒子,我们称之为AgCysNPs,钴形成了粒子,我们称之为CoMOBs。钴和银都可以与铜在同一个反应容器中结合,同时进行不同纳米材料的绿色合成。CuHARS合成后的光偏振为区分同时生成的不同mob的大小和形状提供了一种方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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