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Chromatic Mechanical Response in 2-D Layered Transition Metal Dichalcogenide (TMDs) based Nanocomposites

机译:基于二维分层过渡金属硫族硫化物(TMDs)的纳米复合材料的色机械响应

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摘要

The ability to convert photons of different wavelengths directly into mechanical motion is of significant interest in many energy conversion and reconfigurable technologies. Here, using few layer 2H-MoS2 nanosheets, layer by layer process of nanocomposite fabrication, and strain engineering, we demonstrate a reversible and chromatic mechanical response in MoS2-nanocomposites between 405 nm to 808 nm with large stress release. The chromatic mechanical response originates from the d orbitals and is related to the strength of the direct exciton resonance A and B of the few layer 2H-MoS2 affecting optical absorption and subsequent mechanical response of the nanocomposite. Applying uniaxial tensile strains to the semiconducting few-layer 2H-MoS2 crystals in the nanocomposite resulted in spatially varying energy levels inside the nanocomposite that enhanced the broadband optical absorption up to 2.3 eV and subsequent mechanical response. The unique photomechanical response in 2H-MoS2 based nanocomposites is a result of the rich d electron physics not available to nanocomposites based on sp bonded graphene and carbon nanotubes, as well as nanocomposite based on metallic nanoparticles. The reversible strain dependent optical absorption suggest applications in broad range of energy conversion technologies that is not achievable using conventional thin film semiconductors.
机译:在许多能量转换和可重构技术中,将不同波长的光子直接转换为机械运动的能力引起了极大的兴趣。在这里,我们使用了很少的2H-MoS2纳米片层,纳米复合材料制造的逐层工艺以及应变工程,我们证明了MoS2-纳米复合材料在405 nm至808 nm之间具有较大的应力释放,并且具有可逆和彩色的机械响应。彩色机械响应起源于d轨道,与少数层2H-MoS2的直接激子共振A和B的强度有关,影响了纳米复合材料的光吸收和随后的机械响应。在纳米复合材料中的半导电2H-MoS2半导体单晶晶体上施加单轴拉伸应变会导致纳米复合材料内部的空间能级发生变化,从而将宽带光吸收提高至2.3 eV,并随后产生机械响应。基于2H-MoS2的纳米复合材料中独特的光机械响应是富电子物理的结果,基于sp键合的石墨烯和碳纳米管的纳米复合材料以及基于金属纳米粒子的纳米复合材料无法提供丰富的d电子物理特性。可逆应变依赖的光吸收表明在能量转换技术的广泛应用中是使用常规薄膜半导体无法实现的。

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