Dubadi Rabindra, Jaroniec Mietek
Department of Chemistry and Biochemistry, Kent State University, Kent, OH 44242, USA.
Nanomaterials (Basel). 2023 Aug 7;13(15):2262. doi: 10.3390/nano13152262.
Mechanochemical synthesis of ordered mesoporous carbons with tunable mesopores and well-developed irregular microporosity is investigated. This synthesis was carried out by the self-assembly of ecofriendly chemicals such as tannin and glyoxal used as carbon precursors, and triblock copolymer as a soft templating agent. The structural properties of the resulting carbons were tailored by using different block copolymers (Pluronic F127, and P123) as soft templates. The various weight ratios of tannin and block copolymer were employed to tune the textural properties of these carbons. The tannin: Pluronic F127 ratios (1:0.75, 1:1, 1:1.1) gave the ordered mesoporous carbons among a wide variety of the samples studied. The ordered mesoporosity was not observed in the case of Pluronic P123 templated mesoporous carbons. The CO-activated carbon samples obtained for both Pluronic templates showed a high specific surface area (close to 900 m/g), large pore volume (about 0.6-0.7 cmg), narrow pore size distribution, and high CO uptake of about 3.0 mmol g at 1 bar pressure and ambient temperature.
研究了具有可调介孔和发达不规则微孔的有序介孔碳的机械化学合成。这种合成是通过环保化学品的自组装进行的,例如用作碳前驱体的单宁和乙二醛,以及用作软模板剂的三嵌段共聚物。通过使用不同的嵌段共聚物(普朗尼克F127和P123)作为软模板来定制所得碳的结构性质。采用单宁和嵌段共聚物的不同重量比来调节这些碳的织构性质。在研究的各种样品中,单宁与普朗尼克F127的比例(1:0.75、1:1、1:1.1)得到了有序介孔碳。在以普朗尼克P123为模板的介孔碳中未观察到有序介孔结构。两种普朗尼克模板得到的CO活化碳样品均表现出高比表面积(接近900 m/g)、大孔体积(约0.6 - 0.7 cm/g)、窄孔径分布以及在1 bar压力和环境温度下约3.0 mmol/g的高CO吸附量。