Diaz Jairo A, Ye Zhijiang, Wu Xiawa, Moore Arden L, Moon Robert J, Martini Ashlie, Boday Dylan J, Youngblood Jeffrey P
School of Materials Engineering, Purdue University , 701 West Stadium Avenue, West Lafayette, Indiana 47907, United States.
Biomacromolecules. 2014 Nov 10;15(11):4096-101. doi: 10.1021/bm501131a. Epub 2014 Oct 16.
We achieved a multiscale description of the thermal conductivity of cellulose nanocrystals (CNCs) from single CNCs (∼0.72-5.7 W m(-1) K(-1)) to their organized nanostructured films (∼0.22-0.53 W m(-1) K(-1)) using experimental evidence and molecular dynamics (MD) simulation. The ratio of the approximate phonon mean free path (∼1.7-5.3 nm) to the lateral dimension of a single CNC (∼5-20 nm) suggested a contribution of crystal-crystal interfaces to polydisperse CNC film's heat transport. Based on this, we modeled the thermal conductivity of CNC films using MD-predicted single crystal and interface properties along with the degree of CNC alignment in the bulk films using Hermans order parameter. Film thermal conductivities were strongly correlated to the degree of CNC alignment and the direction of heat flow relative to the CNC chain axis. The low interfacial barrier to heat transport found for CNCs (∼9.4 to 12.6 m(2) K GW(-1)), and their versatile alignment capabilities offer unique opportunities in thermal conductivity control.
我们利用实验证据和分子动力学(MD)模拟,实现了对纤维素纳米晶体(CNC)热导率的多尺度描述,范围从单个CNC(约0.72 - 5.7 W m⁻¹ K⁻¹)到其有序纳米结构薄膜(约0.22 - 0.53 W m⁻¹ K⁻¹)。单个CNC的近似声子平均自由程(约1.7 - 5.3 nm)与单个CNC横向尺寸(约5 - 20 nm)的比值表明,晶体 - 晶体界面有助于多分散CNC薄膜的热传输。基于此,我们使用MD预测的单晶和界面特性以及使用赫尔曼有序参数表示的本体薄膜中CNC的排列程度,对CNC薄膜的热导率进行了建模。薄膜热导率与CNC的排列程度以及热流相对于CNC链轴的方向密切相关。CNC的热传输界面势垒较低(约9.4至12.6 m² K GW⁻¹),且它们具有多种排列能力,这为热导率控制提供了独特的机会。