Hu Min, Petrova Hristina, Wang Xuan, Hartland Gregory V
Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, Indiana 46556-5670, USA.
J Phys Chem B. 2005 Aug 4;109(30):14426-32. doi: 10.1021/jp0516238.
A signal due to coherently excited vibrational motion has been observed in polydisperse silver nanoparticle samples. The particles were synthesized via a wet chemistry seed mediated method, which yields different particle shapes, including spheres, rods, and irregular triangular-shaped particles. The measured vibrational periods were compared to the results from continuum mechanics calculations. This analysis shows that the observed signal arises from the triangular-shaped particles, rather than the rods or spheres. The period of vibration increases as the dimensions of the triangular-shaped particles increase; specifically, we find that the period is given by 2h/c(l), where h is the bisector of the triangle and c(l) is the longitudinal speed of sound in silver.
在多分散银纳米颗粒样品中观察到了由相干激发振动运动产生的信号。这些颗粒是通过湿化学种子介导法合成的,该方法会产生不同的颗粒形状,包括球形、棒状和不规则三角形颗粒。将测量的振动周期与连续介质力学计算结果进行了比较。该分析表明,观察到的信号来自三角形颗粒,而非棒状或球形颗粒。振动周期随着三角形颗粒尺寸的增加而增加;具体而言,我们发现周期由2h/c(l)给出,其中h是三角形的平分线,c(l)是银中的纵向声速。