论文标题
荧光示踪剂分子在纳米结合水中的翻译扩散
Translational diffusion of a fluorescent tracer molecule in nanoconfined water
论文作者
论文摘要
限制在纳米级的水中示踪剂染料分子的扩散是对许多技术应用的直接轴承的重要主题。但是,尚不清楚,如果水中水的动力学以及疏水纳米通道保持散装状态。在这里,我们提出了在两个亲水表面之间局限于纳米级的水中荧光染料分子的扩散测量,它们的分离可以以小于NM的精度来控制。我们观察到荧光强度在快速($ \ sim $ 30 $ $ $ s)和慢速($ \ sim $ 1000 $ $ $ $ s)的时间组件上相关。缓慢的时间尺度是由于荧光团吸附到狭窄的壁上,并且在存在1 m盐的情况下消失。快速成分归因于染料分子在间隙中的扩散,并且发现对低于10 nm的分离类似于散装,并表明在限制下的水的粘度保持不变,直到限制间隙为$ \ $ \ sim $ 5 nm。我们的发现与纳米插入下扩散的一些最新测量相矛盾,但是它们与使用中子散射实验的分子动力学模拟和测量进行了许多自我扩散的估计。
Diffusion of tracer dye molecules in water confined to nanoscale is an important subject with a direct bearing on many technological applications. It is not yet clear however, if the dynamics of water in hydrophilic as well as hydrophobic nanochannels remains bulk-like. Here, we present diffusion measurement of a fluorescent dye molecule in water confined to nanoscale between two hydrophilic surfaces whose separation can be controlled with a precision of less than a nm. We observe that the fluorescence intensities correlate over a fast($\sim$ 30 $μ$s) and slow ($\sim$ 1000 $μ$s) time components. The slow timescale is due to adsorption of fluorophores to the confining walls and it disappears in presence of 1 M salt. The fast component is attributed to diffusion of dye molecules in the gap and is found to be bulk-like for sub-10 nm separations and indicates that viscosity of water under confinement remains unaltered up to confinement gap as small as $\sim$ 5 nm. Our findings contradict some of the recent measurements of diffusion under nanoconfinement, however they are consistent with many estimates of self-diffusion using molecular dynamics simulations and measurements using neutron scattering experiments.