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金属有机框架衍生的防潮分级多孔碳框架作为高选择性甲苯吸附剂和传感材料的研究

Investigation of MOF-derived humidity-proof hierarchical porous carbon frameworks as highly-selective toluene absorbents and sensing materials.

作者信息

Li Zehui, Yuan Yi, Wu Hao, Li Xinghui, Yuan Menglei, Wang Huaizhang, Wu Xiaoxue, Liu Shuai, Zheng Xianming, Kim Mingjun, Zheng Haoyun, Rehman Sadia, Jiang Guangya, Fu Wangyang, Jiang Jingkun

机构信息

State Key Joint Laboratory of Environment Simulation and Pollution Control, School of Environment, Tsinghua University, Beijing 100084, PR China.

Division of Advanced Manufacturing, Graduate School at Shenzhen, Tsinghua University, Shenzhen 518055, PR China.

出版信息

J Hazard Mater. 2021 Jun 5;411:125034. doi: 10.1016/j.jhazmat.2020.125034. Epub 2021 Jan 13.

Abstract

Carbon frameworks (CFs) derived from metal-organic frameworks (MOFs) have been produced as adsorbents of toluene. To further obtain optimum hierarchical porous carbon structure of CFs, different treatment temperatures were applied to a typical kind of MOFs (ZIF-8). The adsorption capacity of the toluene of hierarchical porous CFs obtained from ZIF-8 under 1100 °C (CF-1100, adsorption capacity of 208.5 mg/g) was higher than that of other carbonization temperature and MOFs. Impressively, the adsorbent CF-1100 also exhibited strong hydrophobicity, low desorption temperature, and good selectivity to toluene. The adsorption capacity decreased by only 10.4% under wet condition compared with the dry condition, standing on the top of the recently reported adsorbents. The impressive adsorption performance of CF-1100 is attributed to the larger specific surface area (1024 m/g) and pore volume (0.497 cm/g), newly generated micropores (pore width is 0.6-0.8 nm) and mesopores (pore width above 10 nm), and carbonaceous structure with higher degree of graphitization. Based on the adequate adsorption performance, CF-1100 coated quartz crystal microbalances as sensor also showed a high sensitivity of 0.4004 Hz/ppm and small relative standard deviations of 1.0745% for toluene sensing. This contribution provides a foundation for optimizing potential adsorbents and sensing materials for air pollution abatement.

摘要

源自金属有机框架(MOF)的碳框架(CF)已被制备用作甲苯吸附剂。为了进一步获得CF的最佳分级多孔碳结构,对一种典型的MOF(ZIF-8)采用了不同的处理温度。在1100℃下由ZIF-8制得的分级多孔CF(CF-1100,吸附容量为208.5mg/g)对甲苯的吸附容量高于其他碳化温度和MOF制得的CF。令人印象深刻的是,吸附剂CF-1100还表现出强疏水性、低解吸温度以及对甲苯的良好选择性。与干燥条件相比,在潮湿条件下吸附容量仅下降10.4%,位居最近报道的吸附剂之首。CF-1100令人印象深刻的吸附性能归因于其较大的比表面积(1024m/g)和孔体积(0.497cm/g)、新生成的微孔(孔径为0.6 - 0.8nm)和中孔(孔径大于10nm)以及更高程度石墨化的碳质结构。基于其良好的吸附性能,CF-1100涂覆的石英晶体微天平作为传感器对甲苯传感也显示出0.4004Hz/ppm的高灵敏度和1.0745%的小相对标准偏差。这一成果为优化用于减少空气污染的潜在吸附剂和传感材料奠定了基础。

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