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Size effect on near infrared photothermal conversion properties of liquid-exfoliated MoS_2 and MoSe_2

机译:尺寸对液态剥落的MoS_2和MoSe_2的近红外光热转换性能的影响

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摘要

Molybdenum disulfide and Molybdenum selenide (M0S2 and MoSe_2) have been reported as the ptotothermal agent due to the excellent photothermal conversion property. The MoS_2 and MoSe_2 nanoflakes water dispersion solution were synthesized via the combination technology of grinding and sonication. The different size distribution of MoS_2 has been selected by controlling centrifugation rate. MoS_2 nanoflakes exhibit better photothermal ability than MoSe_2 at the same concentration, while MoSe_2 is easier to tune the temperature changing than the MoS_2 by size selecting. The photothermal mechanism dependence of the lateral size and thickness is discussed based on the micro transport process. The carrier excess kinetic energy can be converted into a heat via phonon emission, which can result in more heat energy generated in the few-layer MoS_2 nanoflakes than in multi-layer ones.
机译:据报道,由于优异的光热转化性能,二硫化钼和硒化钼(MoS2和MoSe_2)作为光热试剂。通过研磨和超声处理相结合的技术合成了MoS_2和MoSe_2纳米片水分散液。通过控制离心率可以选择不同尺寸的MoS_2。在相同浓度下,MoS_2纳米片比MoSe_2表现出更好的光热能力,而MoSe_2通过尺寸选择比MoS_2更容易调节温度变化。基于微传输过程,讨论了光热机理对横向尺寸和厚度的依赖性。载流子的多余动能可通过声子发射转化为热量,与多层多层相比,与多层多层相比,多层MoS_2纳米薄片中产生的热能更多。

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