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二维亚化学计量二钼纳米片中的剥离溶剂依赖的等离子体共振

Exfoliation Solvent Dependent Plasmon Resonances in Two-Dimensional Sub-Stoichiometric Molybdenum Oxide Nanoflakes.

机构信息

School of Electrical and Computer Engineering, RMIT University , Melbourne 3001, Australia.

RMIT Microscopy and Microanalysis Facility, RMIT University , Melbourne 3001, Australia.

出版信息

ACS Appl Mater Interfaces. 2016 Feb 10;8(5):3482-93. doi: 10.1021/acsami.5b12076. Epub 2016 Feb 2.

Abstract

Few-layer two-dimensional (2D) molybdenum oxide nanoflakes are exfoliated using a grinding assisted liquid phase sonication exfoliation method. The sonication process is carried out in five different mixtures of water with both aprotic and protic solvents. We found that surface energy and solubility of mixtures play important roles in changing the thickness, lateral dimension, and synthetic yield of the nanoflakes. We demonstrate an increase in proton intercalation in 2D nanoflakes upon simulated solar light exposure. This results in substoichiometric flakes and a subsequent enhancement in free electron concentrations, producing plasmon resonances. Two plasmon resonance peaks associated with the thickness and the lateral dimension axes are observable in the samples, in which the plasmonic peak positions could be tuned by the choice of the solvent in exfoliating 2D molybdenum oxide. The extinction coefficients of the plasmonic absorption bands of 2D molybdenum oxide nanoflakes in all samples are found to be high (ε > 10(9) L mol(-1) cm(-1)). It is expected that the tunable plasmon resonances of 2D molybdenum oxide nanoflakes presented in this work can be used in future electronic, optical, and sensing devices.

摘要

使用研磨辅助液相超声剥离法剥离出少层二维(2D)氧化钼纳米片。超声过程在水与质子和非质子溶剂的五种不同混合物中进行。我们发现,混合物的表面能和溶解度在改变纳米片的厚度、横向尺寸和合成产率方面起着重要作用。我们证明了在模拟太阳光照射下,2D 纳米片中质子的嵌入增加。这导致亚化学计量的薄片和自由电子浓度的随后增强,产生等离子体共振。在样品中可以观察到与厚度和横向尺寸轴相关的两个等离子体共振峰,其中等离子体共振峰的位置可以通过在剥离 2D 氧化钼时选择溶剂来调节。在所有样品中,2D 氧化钼纳米片的等离子体吸收带的消光系数都很高(ε>10(9)L mol(-1)cm(-1))。预计本文中所提出的 2D 氧化钼纳米片的可调谐等离子体共振可用于未来的电子、光学和传感设备。

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