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静电驱动的二维纳米材料的剥离和杂化。

Electrostatic-Driven Exfoliation and Hybridization of 2D Nanomaterials.

机构信息

Institute of High Performance Computing, A*STAR, 1 Fusionopolis Way, Singapore, 138632, Singapore.

Institute of Materials Research and Engineering, A*STAR, 2 Fusionopolis Way, Singapore, 138634, Singapore.

出版信息

Adv Mater. 2017 Aug;29(32). doi: 10.1002/adma.201700326. Epub 2017 Jun 22.

DOI:10.1002/adma.201700326
PMID:28640388
Abstract

Here, direct and effective electrostatic-driven exfoliation of tungsten trioxide (WO ) powder into atomically thin WO nanosheets is demonstrated for the first time. Experimental evidence together with theoretical simulations clearly reveal that the strong binding of bovine serum albumin (BSA) on the surface of WO via the protonation of NH groups in acidic conditions leads to the effective exfoliation of WO nanosheets under sonication. The exfoliated WO nanosheets have a greatly improved dispersity and stability due to surface-protective function of BSA, and exhibit a better performance and unique advantages in applications such as visible-light-driven photocatalysis, high-capacity adsorption, and fast electrochromics. Further, simultaneous exfoliation and hybridization of WO and MoS nanosheets are demonstrated to form hybrid WO /MoS nanosheets through respective electrostatic and hydrophobic interaction processes. In addition, this electrostatic-driven exfoliation strategy is applied to exfoliate ultrathin black-phosphorus nanosheets from its bulk to exhibit a greatly improved stability due to the surface protection by BSA. Overall, the work presented not only presents a facile and effective route to fabricate 2D materials but also brings more opportunities to exploit unusual exotic and synergistic properties in resulting hybrid 2D materials for novel applications.

摘要

本文首次直接、有效地利用静电作用将三氧化钨(WO )粉末剥离成原子级薄的 WO 纳米片。实验证据和理论模拟清楚地表明,在酸性条件下,通过质子化 NH 基团,牛血清白蛋白(BSA)与 WO 表面的强结合导致 WO 纳米片在超声作用下有效剥离。剥离的 WO 纳米片具有更好的分散性和稳定性,这归因于 BSA 的表面保护功能,并且在可见光驱动光催化、高容量吸附和快速电致变色等应用中表现出更好的性能和独特的优势。此外,还通过各自的静电和疏水相互作用过程,证明了 WO 和 MoS 纳米片的同时剥离和杂化,从而形成了 WO /MoS 杂化纳米片。此外,通过该静电剥离策略,从其体相剥离出超薄黑磷纳米片,由于 BSA 的表面保护,其稳定性得到极大提高。总的来说,这项工作不仅为制备二维材料提供了一种简便有效的途径,而且为探索新型应用中所得杂化二维材料的异常奇特和协同特性带来了更多机会。

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