首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Anisotropic Electron-Phonon Coupling in Colloidal Layered TiS2 Nanodiscs Observed via Coherent Acoustic Phonons
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Anisotropic Electron-Phonon Coupling in Colloidal Layered TiS2 Nanodiscs Observed via Coherent Acoustic Phonons

机译:通过相干声子观察到的胶体层状TiS2纳米圆盘中的各向异性电子-声子耦合。

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摘要

Atomically thin layered transition metal dichalcogenides with highly anisotropic structure exhibit strong anisotropy in various material properties. Here, we report the anisotropic coupling between the interband optical transition and coherent acoustic phonon excited by ultrashort optical excitation in a colloidal solution of multilayered TiS2 nanodiscs. The transient absorption signal from the diameter- and thickness-controlled TiS2 nanodiscs dispersed in solution exhibited an oscillatory feature, which is attributed to the modulation of the interband absorption peak by the intralayer breathing mode. However, the signature of the interlayer acoustic phonon was not observed, while it has been previously observed in noncolloidal exfoliated sheets of MoS2. The dominance of the intralayer mode in modulating the interband optical transition was supported by the density functional theory (DFT) calculations of the optical absorption spectra of TiS2, which showed the stronger sensitivity of the interband absorption peak in the visible region to the in-plane strain than to the out-of-plane strain.
机译:具有高度各向异性结构的原子薄层过渡金属二硫化氢在各种材料特性中均表现出强各向异性。在这里,我们报告了带间光跃迁和相干声子之间的各向异性耦合,该声子由超短光激发在多层TiS2纳米圆片的胶体溶液中激发。来自分散在溶液中的直径和厚度受控的TiS2纳米圆盘的瞬态吸收信号表现出振荡特征,这归因于层内呼吸模式对带间吸收峰的调制。但是,没有观察到层间声子的特征,而以前在非胶体剥离的MoS2片中已经观察到了。 TiS2的光吸收光谱的密度泛函理论(DFT)计算支持层内模式在调制带间光跃迁中的优势,这表明可见光区域中的带间吸收峰对平面内的灵敏度更高应变要比平面外应变大。

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