Department of Chemistry, University of Manchester, Manchester M13 9PL, United Kingdom.
Nano Lett. 2022 Apr 13;22(7):2643-2649. doi: 10.1021/acs.nanolett.1c04424. Epub 2022 Mar 24.
Quantitative measurements of molecular dynamics at the solid-liquid interface are of crucial importance in a wide range of fields, such as heterogeneous catalysis, energy storage, nanofluidics, biosensing, and crystallization. In particular, the molecular dynamics associated with nucleation and crystal growth is very challenging to study because of the poor sensitivity or limited spatial/temporal resolution of the most widely used analytical techniques. We demonstrate that electrolyte-gated organic field-effect transistors (EGOFETs) are able to monitor in real-time the crystallization process in an evaporating droplet. The high sensitivity of these devices at the solid-liquid interface, through the electrical double layer and signal amplification, enables the quantification of changes in solute concentration over time and the transport rate of molecules at the solid-liquid interface during crystallization. Our results show that EGOFETs offer a highly sensitive and powerful, yet simple approach to investigate the molecular dynamics of compounds crystallizing from water.
在广泛的领域中,如多相催化、能量存储、纳流控、生物传感和结晶等,对固-液界面分子动力学的定量测量至关重要。特别是,由于最广泛使用的分析技术的灵敏度差或空间/时间分辨率有限,与成核和晶体生长相关的分子动力学非常难以研究。我们证明,电解质门控有机场效应晶体管(EGOFET)能够实时监测蒸发液滴中的结晶过程。这些器件在固-液界面处的高灵敏度,通过电双层和信号放大,能够定量测量溶质浓度随时间的变化以及结晶过程中分子在固-液界面的传输速率。我们的结果表明,EGOFET 提供了一种高度灵敏、强大而简单的方法来研究从水中结晶的化合物的分子动力学。