Vacancy-Enhanced Biotite Nanosheets for Optical Limiters

IF 5.5 2区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY ACS Applied Nano Materials Pub Date : 2025-04-15 DOI:10.1021/acsanm.5c00454
Dipanwita Mitra, Md. Nur Hasan, Chinmayee Chowde Gowda, Gelu Costin, Chandra Sekhar Tiwary*, Debjani Karmakar* and Prasanta Kumar Datta*, 
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Abstract

The advancement of high-power lasers necessitates the development of effective optical limiting materials to prevent the radiation damage of both sensors and optical vision. Atomically thin two-dimensional (2D) silicates, by virtue of their unique optical properties, have enabled several applications, including optical limiting. This study demonstrates the thickness-dependent nonlinear absorption and optical limiting capabilities of 2D biotite, a silicate mineral, by using femtosecond laser pulses. With decreasing thickness from a few layers to a monolayer, both the third-order nonlinear susceptibility and the two-photon absorption coefficient of this material manifest an increase by 2 orders of magnitude. Monolayer biotite exhibits an optical limiting threshold of 1.51 mJ/cm2, surpassing the respective values for other conventional two-dimensional systems like graphene and transition metal dichalcogenides. The enhancement of the two-photon absorption is intimately tied up with the quantum confinement of the 2D system and its underlying intrinsic lattice defects. An elaborate first-principles investigation of the layer-dependent electronic structure of 2D biotite with various possible defect geometries indicates the presence of highly localized midgap levels primarily associated with Si and O-p orbitals, which may result in improved two-photon absorption in this system. DFT analyses indicate that disruption of the potassium layer (K-layer) and generation of the oxygen vacancies as a result of the liquid-phase exfoliation process may account for the generation of midgap states leading to an enhanced two-photon absorption in systems subjected to prolonged exfoliation periods. Our findings can be extremely beneficial for the development of highly efficient optical limiters utilizing 2D silicates at relatively much lower fluences.

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用于光学限制器的空位增强黑云母纳米片
高功率激光器的进步需要开发有效的光限幅材料,以防止传感器和光学视觉的辐射损伤。原子薄的二维(2D)硅酸盐因其独特的光学性质而具有多种应用,包括光学限制。本研究通过使用飞秒激光脉冲,展示了硅酸盐矿物2D黑云母的厚度依赖性非线性吸收和光限幅能力。随着厚度从几层减小到单层,这种材料的三阶非线性磁化率和双光子吸收系数都增加了2个数量级。单层黑云母的光限幅阈值为1.51 mJ/cm2,超过了石墨烯和过渡金属二硫化物等其他传统二维系统的相应值。双光子吸收的增强与二维系统的量子限制及其潜在的内在晶格缺陷密切相关。对具有各种可能缺陷几何形状的2D黑云母的层依赖电子结构的详细第一性原理研究表明,存在主要与Si和O-p轨道相关的高度局部化的中隙能级,这可能会导致该系统中双光子吸收的改善。DFT分析表明,液相剥离过程导致的钾层(K层)的破坏和氧空位的产生可能解释了中隙态的产生,导致在经历长时间剥离的系统中双光子吸收增强。我们的发现对于开发以相对较低的通量利用2D硅酸盐的高效光学限制器非常有益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
8.30
自引率
3.40%
发文量
1601
期刊介绍: ACS Applied Nano Materials is an interdisciplinary journal publishing original research covering all aspects of engineering, chemistry, physics and biology relevant to applications of nanomaterials. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important applications of nanomaterials.
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