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Impact of Covalent Functionalization on the Aqueous Processability, Catalytic Activity, and Biocompatibility of Chemically Exfoliated MoS2 Nanosheets

机译:共价官能化对MoS2纳米片的水可加工性,催化活性和生物相容性的影响

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Chemically exfoliated MoS2 (ce-MoS2) has emerged in recent years as an attractive two-dimensional material for use in relevant technological applications, but fully exploiting its potential and versatility will most probably require the deployment of appropriate chemical modification strategies. Here, we demonstrate that extensive covalent functionalization of ce-MoS2 nanosheets with acetic acid groups (similar to 0.4 groups grafted per MoS2 unit) based on the organoiodide chemistry brings a number of benefits in terms of their processability and functionality. Specifically, the acetic acid-functionalized nano sheets were furnished with long-term (>6 months) colloidal stability in aqueous medium at relatively high concentrations, exhibited a markedly improved temporal retention of catalytic activity toward the reduction, of nitroarenes, and could be more effectively coupled with silver nanoparticles to form hybrid nanostructures. Furthermore, in vitro cell proliferation tests carried out with murine fibroblasts suggested that the chemical derivatization had a positive effect on the biocompatibility of ce-MoS2. A hydrothermal annealing procedure was also implemented to promote the structural conversion of the functionalized nanosheets from the 1T phase that was induced during the chemical exfoliation step to the original 2H phase of the starting bulk material; while retaining at the same time the aqueous colloidal stability afforded by the presence of the acetic acid groups. Overall; by highlighting the benefits of this type of chemical derivatization, the present work should contribute to strengthen the position of ce-MoS2 as a two-dimensional material of significant practical utility.
机译:近年来,化学剥落型MoS2(ce-MoS2)作为一种有吸引力的二维材料出现在相关技术应用中,但要充分利用其潜力和多功能性,很可能需要部署适当的化学修饰策略。在这里,我们证明了基于有机碘化学的具有乙酸基团(类似于每个MoS2单元接枝的0.4个基团)的ce-MoS2纳米片广泛的共价官能化,就其可加工性和功能性而言带来了许多好处。具体而言,醋酸官能化的纳米片在较高浓度的水性介质中具有长期(> 6个月)的胶体稳定性,显示出显着改善的催化活性对硝基芳烃还原的时间保留性,并且可能更高。有效地与银纳米粒子耦合以形成杂化纳米结构。此外,用鼠成纤维细胞进行的体外细胞增殖试验表明,化学衍生作用对ce-MoS2的生物相容性具有积极作用。还实施了水热退火程序,以促进功能化纳米片从化学剥离步骤中诱导的1T相到起始块状材料的原始2H相的结构转化。同时保持乙酸基团的存在提供的水胶体稳定性。总体;通过强调这种化学衍生化的好处,当前的工作应有助于加强ce-MoS2作为具有重要实际用途的二维材料的地位。

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