A Micelle Fusion-Aggregation Assembly Approach to Mesoporous Carbon Materials with Rich Active Sites for Ultrasensitive Ammonia Sensing
Author | Luo, Wei |
Author | Zhao, Tao |
Author | Li, Yuhui |
Author | We, Jing |
Author | Xu, Pengcheng |
Author | Li, Xinxin |
Author | Wang, Youwei |
Author | Zhang, Wenqing |
Author | Elzatahry, Ahmed A. |
Author | Alghamdi, Abdulaziz |
Author | Deng, Yonghui |
Author | Wang, Lianjun |
Author | Jiang, Wan |
Author | Liu, Yong |
Author | Kong, Biao |
Author | Zhao, Dongyuan |
Available date | 2021-07-05T10:58:28Z |
Publication Date | 2016 |
Publication Name | Journal of the American Chemical Society |
Resource | Scopus |
Abstract | Nanostructured carbon materials have received considerable attention due to their special physicochemical properties. Herein, ordered mesoporous carbons (OMCs) with two-dimension (2D) hexagonal mesostructure and unique buckled large mesopores have successfully been synthesized via a micelle fusion-aggregation assembly method by using poly(ethylene oxide)-block-polystyrene (PEO-b-PS) diblock copolymers as a template and resorcinol-based phenolic resin as a carbon precursor. The obtained ordered mesoporous carbons possess unique fiber-like morphology, specific surface area of 571-880 m2/g, pore volume of 0.54 cm3/g and large mesopores (up to 36.3 nm) and high density of active sites (i.e., carboxylic groups) of 0.188/nm2. Gas sensor based on the ordered mesoporous carbons exhibits an excellent performance in sensing NH3 at a low temperature with fast response (<2 min), ultralow limit of detection (<1 ppm), and good selectivity, due to the large pore sizes, high surface area and rich active sites in the carbon pore walls. 2016 American Chemical Society. |
Language | en |
Publisher | American Chemical Society |
Subject | Fusion-Aggregation Mesoporous Carbon Materials Ultrasensitive Ammonia Sensing |
Type | Article |
Pagination | 12586-12595 |
Issue Number | 38 |
Volume Number | 138 |
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Materials Science & Technology [310 items ]