Park Yang-Seok, Oh Jung Min, Cho Yoon-Kyoung
Department of Biomedical Engineering, School of Life Sciences, Ulsan National Institute of Science and Technology (UNIST) Ulsan 44919 Republic of Korea.
Center for Soft and Living Matter, Institute for Basic Science (IBS) Ulsan 44919 Republic of Korea
RSC Adv. 2018 May 29;8(35):19651-19658. doi: 10.1039/c8ra03496f. eCollection 2018 May 25.
Nanofluidic channels have received growing interest due to their potential for applications in the manipulation of nanometric objects, such as DNA, proteins, viruses, exosomes, and nanoparticles. Although significant advances in nanolithography-based fabrication techniques over the past few decades have allowed us to explore novel nanofluidic transport phenomena and unique applications, the development of new technologies enabling the low-cost preparation of nanochannels with controllable and reproducible shapes and dimensions is still lacking. Thus, we herein report the application of a nanofiber printed using a near-field electrospinning method as a sacrificial mold for the preparation of polydimethylsiloxane nanochannels with circular cross sections. Control of the size and shape of these nanochannels allowed the preparation of nanochannels with channel widths ranging from 70-368 nm and height-to-width ratios of 0.19-1.00. Capillary filling tests confirmed the excellent uniformity and reproducibility of the nanochannels. These results therefore are expected to inspire novel nanofluidic studies due to the simple and low-cost nature of this fabrication process, which allows precise control of the shape and dimensions of the circular cross section.
纳米流体通道因其在操纵纳米物体(如DNA、蛋白质、病毒、外泌体和纳米颗粒)方面的应用潜力而受到越来越多的关注。尽管在过去几十年中,基于纳米光刻的制造技术取得了重大进展,使我们能够探索新的纳米流体传输现象和独特应用,但仍缺乏能够低成本制备具有可控和可重复形状及尺寸的纳米通道的新技术。因此,我们在此报告使用近场静电纺丝法打印的纳米纤维作为牺牲模具来制备具有圆形横截面的聚二甲基硅氧烷纳米通道的应用。对这些纳米通道的尺寸和形状的控制使得能够制备出通道宽度范围为70 - 368 nm且高宽比为0.19 - 1.00的纳米通道。毛细管填充测试证实了纳米通道具有出色的均匀性和可重复性。由于这种制造工艺简单且成本低,能够精确控制圆形横截面的形状和尺寸,因此这些结果有望激发新的纳米流体研究。