Fabrication of Layer-by-Layer Assembled Biomimetic Nanochannels for Highly Sensitive Acetylcholine Sensing

Channel tunneling: We have prepared functional biomimetic nanochannels in polyethylene terephthalate (PET) polymer films (see illustration). We used p‐sulfonatocalix[4]arene to modify the channel surface by flexible layer‐by‐layer electrostatic assembly. Using this method we were able to detect acet...

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Veröffentlicht in:Chemistry : a European journal 2013-06, Vol.19 (24), p.7686-7690
Hauptverfasser: Wen, Long, Sun, Zhongyue, Han, Cuiping, Imene, Boussouar, Tian, Demei, Li, Haibing, Jiang, Lei
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container_end_page 7690
container_issue 24
container_start_page 7686
container_title Chemistry : a European journal
container_volume 19
creator Wen, Long
Sun, Zhongyue
Han, Cuiping
Imene, Boussouar
Tian, Demei
Li, Haibing
Jiang, Lei
description Channel tunneling: We have prepared functional biomimetic nanochannels in polyethylene terephthalate (PET) polymer films (see illustration). We used p‐sulfonatocalix[4]arene to modify the channel surface by flexible layer‐by‐layer electrostatic assembly. Using this method we were able to detect acetylcholine with high sensitivity.
doi_str_mv 10.1002/chem.201300528
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source Wiley Online Library - AutoHoldings Journals; MEDLINE
subjects acetylcholine
Acetylcholine - analysis
Assembly
Biomimetics
calixarenes
Calixarenes - chemistry
Channels
Chemistry
Electrostatics
Illustrations
layer-by-layer assembly
Models, Chemical
nanochannels
Nanostructure
Nanostructures - chemistry
Nanostructures - ultrastructure
Polyethylene terephthalates
Polyethylene Terephthalates - chemistry
Polymeric films
Static Electricity
title Fabrication of Layer-by-Layer Assembled Biomimetic Nanochannels for Highly Sensitive Acetylcholine Sensing
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