| Literature DB >> 29512386 |
Zhuo Chen1, Jinrong Wang1, Douxing Pan2, Yao Wang1,3, Richard Noetzel3, Hao Li3, Peng Xie1, Wenle Pei1, Ahmad Umar4, Lei Jiang1, Nan Li5, Nicolaas Frans de Rooij5,6, Guofu Zhou3,5,6.
Abstract
Inspired by the densely covered capillary structure inside a dog's nose, we report an artificial nanostructure, i. e., poly(sodium p-styrenesulfonate)-functionalized reduced graphene oxide nanoscrolls (PGNS), with high structural perfection and efficient gas sensing applications. A facile supramolecular assembly is introduced to functionalize graphene with the functional polymer, combined with the lyophilization technique to massively transform the planar graphene-based nanosheets to nanoscrolls. Detailed characterizations reveal that the bioinspired nanoscrolls exhibit a wide-open tubular morphology with uniform dimensions that is structurally distinct from the previously reported ones. The detailed morphologies of the graphene-based nanosheets in each scrolling stage during lyophilization are monitored by cryo-SEM. This unravels an asymmetric polymer-induced graphene scrolling mechanism including the corresponding scrolling process, which is directly presented by molecular dynamics simulations. The fabricated PGNS sensors exhibit superior gas sensing performance with reliable repeatability, excellent linear sensibility, and, especially, an ultrahigh response ( Ra/ Rg = 5.39, 10 ppm) toward NO2. The supramolecular assembly combined with the lyophilization technique to fabricate PGNS provides a strategy to design biomimetic materials for gas sensors and chemical trace detectors.Entities:
Keywords: cryo-SEM; gas sensors; graphene nanoscrolls; lyophilization; supramolecular assembly
Year: 2018 PMID: 29512386 DOI: 10.1021/acsnano.7b08294
Source DB: PubMed Journal: ACS Nano ISSN: 1936-0851 Impact factor: 15.881