Ferrocenyl building block constructing porous organic polymer for gas capture and methyl violet adsorption

来源期刊:中南大学学报(英文版)2020年第4期

论文作者:刘清泉 黄晶 谭志强 苏惠敏 郭翼雯 刘欢 廖博

文章页码:1247 - 1261

Key words:ferrocene; porous organic polymer; gas capture; dyeing wastewater

Abstract: Ferrocene-based porous organic polymer (FcPOP) was constructed with ferrocene and porphyrin derivatives as building blocks via Schiff-base coupling. FcPOP was well characterized, and exhibited good thermal stability, high porosity, microporous structure, and homogeneous pore size distribution. Ferrocene blocks with highly electron-rich characteristics endowed FcPOP with excellent adsorption capacity of CO2 and methyl violet. The kinetic study indicated adsorption of methyl violet onto FcPOP mainly complied with pesudo-second order model. The maximum adsorption capacity of FcPOP derived from Langmuir isotherm model reached up to 516 mg/g. More importantly, FcPOP could be easily regenerated and repeatedly employed for removal of methyl violet with high efficiency. Overall, FcPOP in the present study highlighted prospective applications in the field of gas capture and dyeing wastewater treatment.

Cite this article as: HUANG Jin, TAN Zhi-qiang, SU Hui-min, GUO Yi-wen, LIU Huan, LIAO Bo, LIU Qing-quan. Ferrocenyl building block constructing porous organic polymer for gas capture and methyl violet adsorption [J]. Journal of Central South University, 2020, 27(4): 1247-1261. DOI: https://doi.org/10.1007/s11771-020-4364-4.

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