Literature DB >> 33821624

Precisely Controlled Vertical Alignment in Mesostructured Carbon Thin Films for Efficient Electrochemical Sensing.

Ruicong Wang1, Kun Lan1, Runfeng Lin1, Xinxin Jing2, Chin-Te Hung1, Xingmiao Zhang1, Liangliang Liu1, Yi Yang1, Gang Chen3, Xiaoguo Liu2, Chunhai Fan2, Ahmed Mohamed El-Toni4,5, Aslam Khan4, Yun Tang1, Dongyuan Zhao1.   

Abstract

Two-dimensional carbon materials, incorporating a large mesoporosity, are attracting considerable research interest in various fields such as catalysis, electrochemistry, and energy-related technologies owing to their integrated functionalities. However, their potential applications, which require favorable mass transport within mesopore channels, are constrained by the undesirable and finite mesostructural configurations due to the immense synthetic difficulties. Herein, we demonstrate an oriented monomicelle assembly strategy, for the facile fabrication of highly ordered mesoporous carbon thin films with vertically aligned and permeable mesopore channels. Such a facile and reproducible approach relies on the swelling and fusion effect of hydrophobic benzene homologues for directional monomicelle assembly. The orientation assembly process shows precise controllability and great universality, affording mesoporous carbon films with a cracking-free structure over a centimeter in size, highly tunable thicknesses (13 to 85 nm, an interval of ∼12 nm), mesopore size (8.4 to 13.5 nm), and switchable growth substrates. Owing to their large permeable mesopore channels, electrochemical sensors based on vertical mesoporous carbon films exhibit an ultralow limit of detection (50 nmol L-1) and great sensitivity in dopamine detection.

Entities:  

Keywords:  2D carbon materials; electrochemical sensing; mesoporous materials; oriented assembly; vertical mesochannels

Year:  2021        PMID: 33821624     DOI: 10.1021/acsnano.1c01367

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  1 in total

1.  Modular super-assembly of hierarchical superstructures from monomicelle building blocks.

Authors:  Zaiwang Zhao; Yujuan Zhao; Runfeng Lin; Yuzhu Ma; Lipeng Wang; Liangliang Liu; Kun Lan; Jie Zhang; Hanxing Chen; Mengli Liu; Fanxing Bu; Pengfei Zhang; Liang Peng; Xingmiao Zhang; Yupu Liu; Chin-Te Hung; Angang Dong; Wei Li; Dongyuan Zhao
Journal:  Sci Adv       Date:  2022-05-13       Impact factor: 14.957

  1 in total

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