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探究自组装肽纳米管中的非线性光学系数

Probing nonlinear optical coefficients in self-assembled peptide nanotubes.

作者信息

Khanra Soma, Ghosh Kartik, Ferreira Fabio F, Alves Wendel A, Punzo Francesco, Yu Ping, Guha Suchismita

机构信息

Department of Physics and Astronomy, University of Missouri, Columbia, MO 65211, USA.

Physics, Astronomy, and Materials Science, Missouri State University, Springfield, MO 65897, USA.

出版信息

Phys Chem Chem Phys. 2017 Jan 25;19(4):3084-3093. doi: 10.1039/c6cp07879f.

Abstract

Self-assembled l,l-diphenylalanine (FF) peptide micro/nanotubes represent a class of biomimetic materials with a non-centrosymmetric crystal structure and strong piezoelectricity. The peptide nanotubes synthesized by a liquid phase method yield tube lengths in the hundreds of micron range, inner diameters in the few hundred nanometer range, and outer diameters in the 5-15 μm range. Second harmonic generation (SHG) polarimetry from individual self-assembled FF nanotubes is used to obtain the nonlinear (NLO) optical coefficients as a function of the tube diameter and thermal treatment. The ratio of the shear to the longitudinal component (d/d) of the NLO coefficient increases with the diameter of the tubes. One of the transverse components of the nonlinear coefficient is found to be negative, and its magnitude with respect to the longitudinal component increases with the tube diameter. Thermal treatment of individual FF tubes has a similar effect upon increasing the diameter of the tubes in SHG polarimetry. Concurrent Raman scattering measurements from individual FF tubes show a distinct change in the low frequency (100 cm) region with the diameter of the tubes reflecting subtle effects of water.

摘要

自组装的L,L-二苯基丙氨酸(FF)肽微/纳米管是一类具有非中心对称晶体结构和强压电性的仿生材料。通过液相法合成的肽纳米管的管长在数百微米范围内,内径在几百纳米范围内,外径在5-15μm范围内。利用单个自组装FF纳米管的二次谐波产生(SHG)偏振测量来获得作为管直径和热处理函数的非线性(NLO)光学系数。NLO系数的剪切分量与纵向分量之比(d/d)随管直径增加。发现非线性系数的一个横向分量为负,并且其相对于纵向分量的大小随管直径增加。在SHG偏振测量中,对单个FF管进行热处理对增加管直径有类似的效果。来自单个FF管的同步拉曼散射测量显示低频(100 cm)区域随管直径有明显变化,反映了水的微妙影响。

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