Apel Pavel Y, Blonskaya Irina V, Lizunov Nikolay E, Olejniczak Katarzyna, Orelovitch Oleg L, Toimil-Molares María E, Trautmann Christina
Flerov Laboratory of Nuclear Reactions, Joint Institute for Nuclear Research, Joliot-Curie str. 6, 141980, Dubna, Russia.
Department of Chemistry, New Technologies and Materials, Dubna State University, Universitetskaya str. 19, 141980, Dubna, Russia.
Small. 2018 May;14(18):e1703327. doi: 10.1002/smll.201703327. Epub 2018 Mar 24.
Asymmetrically etched ion-track membranes attract great interest for both fundamental and technical reasons because of a large variety of applications. So far, conductometric measurements during track etching provide only limited information about the complicated asymmetric etching process. In this paper, monitoring of osmotic phenomena is used to elucidate the initial phase of nanopore formation. It is shown that strong alkaline solutions generate a considerable osmotic flow of water through newborn conical pores. The interplay between diffusion and convection in the pore channel results in a substantially nonlinear alkali concentration gradient and a rapid change in the pore geometry after breakthrough. Similar phenomena are observed in experiments with cylindrical track-etched pores of 15-30 nm in radius. A theoretical description of the diffusion-convection processes in the pores is provided.
由于具有多种应用,不对称蚀刻离子径迹膜因其基础和技术方面的原因而备受关注。到目前为止,径迹蚀刻过程中的电导测量仅提供了关于复杂不对称蚀刻过程的有限信息。在本文中,利用对渗透现象的监测来阐明纳米孔形成的初始阶段。结果表明,强碱性溶液会使水通过新生的锥形孔产生相当可观的渗透流。孔道中扩散与对流之间的相互作用导致了实质上非线性的碱浓度梯度以及突破后孔几何形状的快速变化。在半径为15 - 30 nm的圆柱形径迹蚀刻孔的实验中也观察到了类似现象。本文提供了孔中扩散 - 对流过程的理论描述。