渗透
支柱
水道
频道(广播)
化学
质子
组合化学
化学工程
计算机科学
工程类
生物化学
电信
膜
物理
机械工程
量子力学
入口
作者
Iuliana‐Marilena Andrei,Dmytro Strilets,Shixin Fa,Marc Baaden,Tomoki Ogoshi,Mihail Bãrboiu
标识
DOI:10.1002/anie.202310812
摘要
Abstract Artificial water channels (AWCs) that selectively transport water and reject ions through bilayer membranes have potential to act as synthetic Aquaporins (AQPs). AWCs can have a similar osmotic permeability, better stability, with simpler manufacture on a larger‐scale and have higher functional density and surface permeability when inserted into the membrane. Here, we report the screening of combinatorial libraries of symmetrical and unsymmetrical rim‐functionalized PAs A – D that are able to transport ca. 10 7 –10 8 water molecules/s/channel, which is within 1 order of magnitude of AQPs’ and show total ion and proton rejection. Among the four channels, C and D are 3–4 times more water permeable than A and B when inserted in bilayer membranes. The binary combinations of A – D with different molar ratios could be expressed as an independent (linear ABA ), a recessive (inhibition AB , AC , DB , ACA ), or a dominant (amplification, DBD ) behavior of the water net permeation events.
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