Wang Li, Takeda Shohei, Sato Ryota, Sakamoto Masanori, Teranishi Toshiharu, Tamai Naoto
Department of Chemistry, School of Science and Technology, Kwansei Gakuin University, 2-1 Gakuen, Sanda 669-1337, Japan.
Institute for Chemical Research, Kyoto University, Gokasho Uji, Kyoto 611-0011, Japan.
ACS Omega. 2021 Feb 16;6(8):5485-5489. doi: 10.1021/acsomega.0c05806. eCollection 2021 Mar 2.
Coherent acoustic phonon vibrations of Au nanopolyhedrons, including nanocubes, nano-octahedrons, and nanocuboctahedrons, in aqueous solutions and poly(vinyl alcohol) (PVA) films, were investigated using transient absorption (TA) spectroscopy combined with finite element analysis based on continuum elastic theory. In each type of nanopolyhedron, two vibrational modes with similar quality factors (Qs) and phases were observed, suggesting that both were induced by thermal expansion. The low-frequency vibrational mode represents a tip-to-tip displacement in each nanopolyhedron, whereas the high-frequency mode is the breathing vibration of the whole particle and reveals morphology dependence, displaying a face-to-face displacement in nanocuboctahedrons, an edge-to-edge displacement in nano-octahedrons, and a combination of face-to-face and edge-to-edge displacements in nanocubes. Moreover, a clear phonon beat was identified in the two vibrational modes of the nanocuboctahedrons. Our experimental results provide a possible application of morphology-controllable metal nanoresonators.
利用瞬态吸收(TA)光谱结合基于连续弹性理论的有限元分析,研究了金纳米多面体(包括纳米立方体、纳米八面体和纳米立方八面体)在水溶液和聚乙烯醇(PVA)薄膜中的相干声子振动。在每种类型的纳米多面体中,观察到两种具有相似品质因数(Qs)和相位的振动模式,这表明两者都是由热膨胀引起的。低频振动模式代表每个纳米多面体中的尖端到尖端位移,而高频模式是整个粒子的呼吸振动,并显示出形态依赖性,在纳米立方八面体中表现为面对面位移,在纳米八面体中表现为边到边位移,在纳米立方体中表现为面对面和边到边位移的组合。此外,在纳米立方八面体的两种振动模式中识别出明显的声子拍频。我们的实验结果为形态可控的金属纳米谐振器提供了一种可能的应用。