Camisasca Gaia, Tinti Antonio, Giacomello Alberto
Dipartimento di Ingegneria Meccanica e Aerospaziale, Sapienza Università di Roma, Via Eudossiana 18, 00184 Rome, Italy.
J Phys Chem Lett. 2020 Nov 5;11(21):9171-9177. doi: 10.1021/acs.jpclett.0c02600. Epub 2020 Oct 15.
Here, we investigate the role of a dilute hydrophobic gas on the phase behavior of water confined in hydrophobic nanopores. Molecular dynamics showed that gas atoms are hydrophobically attracted within the pores, where even a single particle is able to induce spontaneous drying of the whole pore. The drying process is rationalized in terms of its free-energy landscape, revealing that the penetration of a gas atom is able to suppress the drying free-energy barriers of hydrophobic pores. Results provide insights into the role of gases on the wettability of nanopores and evidence of a possibile physical mechanism for the action of volatile anesthetics on some kinds of ion channels. Results also indicate a novel, bioinspired strategy for controlling bubble formation in nanopores for sensing and energy applications.
在此,我们研究了一种稀薄疏水气体对限制在疏水纳米孔中的水的相行为的作用。分子动力学表明,气体原子在孔内受到疏水吸引,即使单个粒子也能引发整个孔的自发干燥。根据其自由能态势对干燥过程进行了合理化解释,结果表明气体原子的渗透能够抑制疏水孔的干燥自由能势垒。这些结果为气体在纳米孔润湿性方面的作用提供了见解,并为挥发性麻醉剂对某些离子通道的作用提供了一种可能的物理机制的证据。结果还表明了一种新颖的、受生物启发的策略,用于控制纳米孔中气泡的形成,以用于传感和能源应用。