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六方氮化硼的共溶剂剥离:原料块状氮化硼尺寸和共溶剂组成的影响

Co-Solvent Exfoliation of Hexagonal Boron Nitride: Effect of Raw Bulk Boron Nitride Size and Co-Solvent Composition.

作者信息

Nie Xiang, Li Guo, Jiang Zhao, Li Wei, Ouyang Ting, Wang Jianfeng

机构信息

College of Materials Science and Engineering, Hunan University, Changsha 410082, China.

Hunan Province Key Laboratory for Advanced Carbon Materials and Applied Technology, Hunan University, Changsha 410082, China.

出版信息

Nanomaterials (Basel). 2020 May 28;10(6):1035. doi: 10.3390/nano10061035.

Abstract

Exfoliation of two-dimensional boron nitride nanosheets (BNNSs) from parent bulk material has been receiving intensive attention because of its fascinating physical properties. Liquid exfoliation is a simple, scalable approach to produce single-layer or few-layer BNNS. In this paper, water/propanol co-solvent exfoliation of bulk boron nitride under the assistance of sonication was investigated in detail. Special attention was paid on the effect of raw bulk boron nitride size and co-solvent composition. The results show that sonication of small-size hexagonal boron nitride tends to generate large nanosheets, due to a predominant solvent wedge effect. In addition, it is found that the composition of water/propanol co-solvent has an important effect on exfoliation efficiency. Interestingly, although two isomers of 1-propanol (NPA) and 2-propanol (IPA) have the same molecular weight and similar surface tension, their aqueous solutions allow the formation of boron nitride nanosheets dispersion with markedly different concentrations. It is proposed that due to their spatial configuration difference, NPA with its longer molecular chain and fewer hydrophobic methyl group tends to form dynamic water-NPA clusters with larger size than water-IPA clusters. The hydrodynamic radius of the co-solvent "clusters" was calculated to be 0.72 nm for water/NPA system and 0.44 nm for water/IPA system at their maximum, respectively. Their size changes, represented by two curves, indicate a strong "cluster size" effect on exfoliation efficiency. Our work provides an insight into co-solvent exfoliation of hexagonal boron nitride and emphasizes the importance of co-solvent cluster size in exfoliation efficiency.

摘要

从母体块状材料中剥离二维氮化硼纳米片(BNNSs)因其迷人的物理性质而备受关注。液相剥离是一种制备单层或少数层BNNS的简单且可扩展的方法。本文详细研究了在超声辅助下块状氮化硼的水/丙醇共溶剂剥离。特别关注了原料块状氮化硼尺寸和共溶剂组成的影响。结果表明,由于主要的溶剂楔效应,小尺寸六方氮化硼的超声处理倾向于生成大的纳米片。此外,发现水/丙醇共溶剂的组成对剥离效率有重要影响。有趣的是,尽管1-丙醇(NPA)和2-丙醇(IPA)的两种异构体具有相同的分子量和相似的表面张力,但它们的水溶液形成的氮化硼纳米片分散体浓度明显不同。据推测,由于它们的空间构型差异,分子链较长且疏水甲基较少的NPA倾向于形成尺寸比水-IPA簇更大的动态水-NPA簇。水/NPA体系和水/IPA体系的共溶剂“簇”的流体动力学半径在最大值时分别计算为0.72 nm和0.44 nm。它们由两条曲线表示的尺寸变化表明“簇尺寸”对剥离效率有很强的影响。我们的工作为六方氮化硼的共溶剂剥离提供了见解,并强调了共溶剂簇尺寸对剥离效率的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0435/7352847/d16365d73c05/nanomaterials-10-01035-g001.jpg

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