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The effect of bending stiffness on scaling laws for the size of colloidal nanosheets

机译:弯曲刚度对胶体纳米片尺寸定标规律的影响

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摘要

Using coarse-grained Brownian dynamics simulations, we study the relationship between hydrodynamic radius (RH) and the lateral size (L) of dispersed nanosheets. Our simulation results show that the bending modulus of the nanosheets has a significant impact on the exponent of this power-law relationship between the radius of gyration (and thus RH) and L. The exponent can vary from 0.17 to 1. This sheds light on the interpretation of dynamic light scattering (DLS) measurements, such that DLS data can capture both nanosheet lateral size and modulus (which is, in turn, affected by nanosheet thickness).
机译:使用粗粒度布朗动力学模拟,我们研究了分散的纳米片的流体动力学半径(RH)和横向尺寸(L)之间的关系。我们的模拟结果表明,纳米片的弯曲模量对回转半径(因此是RH)和L之间的幂律关系的指数具有显着影响。该指数可以在0.17到1之间变化。对动态光散射(DLS)测量的解释,以便DLS数据可以同时捕获纳米片的横向尺寸和模量(进而受纳米片的厚度影响)。

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