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咪唑鎓离子液体介导黑磷剥离,同时防止磷烯分解。

Imidazolium Ionic Liquid Mediates Black Phosphorus Exfoliation while Preventing Phosphorene Decomposition.

机构信息

Instituto de Ciência e Tecnologia, Universidade Federal de São Paulo , São José dos Campos, São Paulo 12247-014, Brazil.

Department of Chemistry, University of Southern California , Los Angeles, California 90089, United States.

出版信息

ACS Nano. 2017 Jun 27;11(6):6459-6466. doi: 10.1021/acsnano.7b03074. Epub 2017 Jun 6.

DOI:10.1021/acsnano.7b03074
PMID:28558227
Abstract

Forthcoming applications in electronics and optoelectronics make phosphorene a subject of vigorous research efforts. Solvent-assisted exfoliation of phosphorene promises affordable delivery in industrial quantities for future applications. We demonstrate, using equilibrium, steered and umbrella sampling molecular dynamics, that the 1-ethyl-3-methylimidazolium tetrafluoroborate [EMIM][BF] ionic liquid is an excellent solvent for phosphorene exfoliation. The presence of both hydrophobic and hydrophilic moieties, as well as substantial shear viscosity, allows [EMIM][BF] simultaneously to facilitate separation of phosphorene sheets and to protect them from getting in direct contact with moisture and oxygen. The exfoliation thermodynamics is moderately unfavorable, which indicates that an external stimulus is necessary. Unexpectedly, [EMIM][BF] does not coordinates phosphorene by π-electron stacking with the imidazole ring. Instead, the solvation proceeds via hydrophobic side chains, while polar imidazole rings form an electrostatically stabilized protective layer. The simulations suggest that further efforts in solvent engineering for phosphorene exfoliation should concentrate on use of weakly coordinating ions and grafting groups that promote stronger dispersion interactions and on elongation of nonpolar chains.

摘要

即将在电子和光电领域的应用使黑磷烯成为研究的热点。溶剂辅助剥离黑磷烯有望以工业规模提供廉价的产品,以满足未来的应用需求。我们使用平衡态、导向和雨伞采样分子动力学模拟表明,1-乙基-3-甲基咪唑四氟硼酸盐([EMIM][BF])离子液体是一种优异的黑磷烯剥离溶剂。它既具有疏水性和亲水性部分,又具有较大的剪切黏度,这使得[EMIM][BF]既能促进黑磷烯片的分离,又能防止它们与水分和氧气直接接触。剥离的热力学条件适中不利,这表明需要外部刺激。出乎意料的是,[EMIM][BF]并没有通过与咪唑环的π-电子堆积来配位黑磷烯。相反,溶剂化作用是通过疏水性侧链进行的,而极性咪唑环形成静电稳定的保护层。模拟表明,进一步努力探索用于黑磷烯剥离的溶剂工程,应集中于使用弱配位离子和接枝基团,以促进更强的分散相互作用,并延长非极性链。

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ACS Nano. 2017 Jun 27;11(6):6459-6466. doi: 10.1021/acsnano.7b03074. Epub 2017 Jun 6.
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