A universal functionalization strategy for biomimetic nanochannel via external electric field assist

来源 :纳米研究(英文版) | 被引量 : 0次 | 上传用户:tianming2001
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Biological ion channels,as fundamental units participating in various daily behaviors with incredible mass transportation and signal transmission,triggered booming researches on manufacturing their artificial prototypes.Biomimetic ion channel with the nanometer scale for smart responding functions has been successfully realized in sorts of materials by employing state-of-art nanotechnology.Ion track-etching technology,as crucial branches of fabricating solid-state nanochannels,exhibits outstanding advantages,such as easy fabrication,low cost,and high customization.To endow the nanochannel with smart responsibility,various modification methods are developed,including chemical grafting,non-covalent adsorption,and electrochemical deposition,enriching the reservoir of accessible stimuli-responses combinations,whereas were limited by their relatively lengthy and complex procedure.Here,based on the electric field induced self-assembly of polyelectrolytes,a universal customizable modifying strategy has been proposed,which exhibits superiorities in their functionalization with convenience and compatibility.By using this protocol,the channels' ionic transport behaviors could be easily tuned,and even the specific ionic or molecular responding could be realized with superior performance.This strategy surely accelerates the nanochannels functionalization into fast preparing,high efficiency,and large-scale application scenarios.
其他文献
Atherosclerotic cardiovascular disease is the leading cause of mortality in the world.A driving feature of atherosclerotic plaque formation is dysfunctional eff
Combining the H2 production with brine remediation is regarded as a sustainable approach to achieving clean H2 energy.However,designing stable CI-oxidation reac
Two-dimensional (2D) materials have recently provided a new perspective on optoelectronics because of their unique layered structure and excellent physical prop
Cancer therapeutic nanovaccines are ideal tools to inhibit tumor growth and provide the body with continuous protecting immune surveillance.However,the conventi
With the unique properties,layered transition metal dichalcogenide (TMD) and its heterostructures exhibit great potential for applications in electronics.The el
High conductivity two-dimensional (2D) materials have been proved to be potential electrode materials for flexible supercapacitors because of its outstanding ch
It is essential to manufacture microwave abeorbers with strong abeorption as well as tunable absorption bands at a low filler content.However,it remains challen
Various redox-active organic molecules can serve as ideal electrode materials to realize sustainable energy storage systems.Yet,to be more appropriate for pract
Decorating semi-conducting metal oxide with noble metal has been recognized as a viable approach to improve the sensitivity of gas sensor.However,conventional m
Type-Ⅱ iron-based superconductors (Fe-SCs),the alkali-metal-intercalated iron selenide AxFe2-ySe2 (A =K,Tl,Rb,etc.) with a superconducting transition temperatu