Yu Yuanxi, Yang Chenxing, Baggioli Matteo, Phillips Anthony E, Zaccone Alessio, Zhang Lei, Kajimoto Ryoichi, Nakamura Mitsutaka, Yu Dehong, Hong Liang
School of Physics and Astronomy, Shanghai Jiao Tong University, 200240, Shanghai, China.
Institute of Natural Sciences, Shanghai Jiao Tong University, 200240, Shanghai, China.
Nat Commun. 2022 Jun 25;13(1):3649. doi: 10.1038/s41467-022-31349-6.
The vibrational properties of crystalline bulk materials are well described by Debye theory, which successfully predicts the quadratic ω low-frequency scaling of the vibrational density of states. However, the analogous framework for nanoconfined materials with fewer degrees of freedom has been far less well explored. Using inelastic neutron scattering, we characterize the vibrational density of states of amorphous ice confined inside graphene oxide membranes and we observe a crossover from the Debye ω scaling to an anomalous ω behaviour upon reducing the confinement size L. Additionally, using molecular dynamics simulations, we confirm the experimental findings and prove that such a scaling appears in both crystalline and amorphous solids under slab-confinement. We theoretically demonstrate that this low-frequency ω law results from the geometric constraints on the momentum phase space induced by confinement along one spatial direction. Finally, we predict that the Debye scaling reappears at a characteristic frequency ω = vL/2π, with v the speed of sound of the material, and we confirm this quantitative estimate with simulations.
德拜理论很好地描述了晶体块状材料的振动特性,该理论成功地预测了振动态密度的二次方低频标度关系。然而,对于自由度较少的纳米受限材料,类似的框架却鲜有研究。我们利用非弹性中子散射,表征了氧化石墨烯膜内非晶冰的振动态密度,并且观察到随着受限尺寸L的减小,振动态密度从德拜ω标度关系转变为反常的ω行为。此外,通过分子动力学模拟,我们证实了实验结果,并证明这种标度关系在平板受限下的晶体和非晶固体中均会出现。我们从理论上证明,这种低频ω定律是由沿一个空间方向的受限对动量相空间的几何约束导致的。最后,我们预测德拜标度关系会在特征频率ω = vL/2π处重新出现,其中v是材料的声速,并且我们通过模拟证实了这一定量估计。