Jakšić Zoran, Jakšić Olga
Center of Microelectronic Technologies, Institute of Chemistry, Technology and Metallurgy, University of Belgrade, 11000 Belgrade, Serbia.
Biomimetics (Basel). 2020 May 29;5(2):24. doi: 10.3390/biomimetics5020024.
Nanomembranes are the principal building block of basically all living organisms, and without them life as we know it would not be possible. Yet in spite of their ubiquity, for a long time their artificial counterparts have mostly been overlooked in mainstream microsystem and nanosystem technologies, being a niche topic at best, instead of holding their rightful position as one of the basic structures in such systems. Synthetic biomimetic nanomembranes are essential in a vast number of seemingly disparate fields, including separation science and technology, sensing technology, environmental protection, renewable energy, process industry, life sciences and biomedicine. In this study, we review the possibilities for the synthesis of inorganic, organic and hybrid nanomembranes mimicking and in some way surpassing living structures, consider their main properties of interest, give a short overview of possible pathways for their enhancement through multifunctionalization, and summarize some of their numerous applications reported to date, with a focus on recent findings. It is our aim to stress the role of functionalized synthetic biomimetic nanomembranes within the context of modern nanoscience and nanotechnologies. We hope to highlight the importance of the topic, as well as to stress its great applicability potentials in many facets of human life.
纳米膜是基本上所有生物的主要组成部分,没有它们,我们所知的生命将不可能存在。然而,尽管它们无处不在,但长期以来,在主流微系统和纳米系统技术中,人工合成的纳米膜大多被忽视,充其量只是一个小众话题,而没有在这类系统中作为基本结构之一占据其应有的地位。合成仿生纳米膜在众多看似毫不相干的领域中都至关重要,包括分离科学与技术、传感技术、环境保护、可再生能源、加工工业、生命科学和生物医学。在本研究中,我们回顾了合成无机、有机和混合纳米膜以模仿并在某些方面超越生物结构的可能性,考虑了它们的主要相关特性,简要概述了通过多功能化增强它们的可能途径,并总结了迄今为止报道的它们的众多应用,重点是近期的研究成果。我们的目的是强调功能化合成仿生纳米膜在现代纳米科学和纳米技术背景下的作用。我们希望突出该主题的重要性,并强调其在人类生活诸多方面的巨大应用潜力。