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源自绿色生物染料的氮掺杂有序介孔碳用于电化学传感和高压二氧化碳存储。

N-Doped Ordered Mesoporous Carbon Originated from a Green Biological Dye for Electrochemical Sensing and High-Pressure CO2 Storage.

作者信息

Zhou Shenghai, Xu Hongbo, Yuan Qunhui, Shen Hangjia, Zhu Xuefeng, Liu Yi, Gan Wei

机构信息

Laboratory of Environmental Science and Technology, Xinjiang Technical Institute of Physics & Chemistry; Key Laboratory of Functional Materials and Devices for Special Environments, Chinese Academy of Sciences , Urumqi 830011, China.

University of Chinese Academy of Sciences , Beijing 100049, China.

出版信息

ACS Appl Mater Interfaces. 2016 Jan 13;8(1):918-26. doi: 10.1021/acsami.5b10502. Epub 2015 Dec 22.

Abstract

Herein, a series of nitrogen-doped ordered mesoporous carbons (NOMCs) with tunable porous structure were synthesized via a hard-template method with a green biological dye as precursor, under various carbonization temperatures (700-1100 °C). Compared with the ordered mesoporous silica-modified and unmodified electrodes, the use of electrodes coated by NOMCs (NOMC-700-NOMC-1100) resulted in enhanced signals and well-resolved oxidation peaks in electrocatalytic sensing of catechol and hydroquinone isomers, attributable to NOMCs' open porous structures and increased edge-plane defect sites on the N-doped carbon skeleton. Electrochemical sensors using NOMC-1000-modified electrode were fabricated and proved feasible in tap water sample analyses. The NOMCs were also used as sorbents for high-pressure CO2 storage. The NOMC with the highest N content exhibits the best CO2 absorption capacities of 800.8 and 387.6 mg/g at 273 and 298 K (30 bar), respectively, which is better than those of other NOMC materials and some recently reported CO2 sorbents with well-ordered 3D porous structures. Moreover, this NOMC shows higher affinity for CO2 than for N2, a benefit of its higher nitrogen content in the porous carbon framework.

摘要

在此,通过硬模板法,以绿色生物染料为前驱体,在不同碳化温度(700 - 1100℃)下合成了一系列具有可调孔结构的氮掺杂有序介孔碳(NOMC)。与有序介孔二氧化硅改性和未改性的电极相比,使用由NOMC(NOMC - 700 - NOMC - 1100)包覆的电极,在儿茶酚和对苯二酚异构体的电催化传感中产生了增强的信号和分辨良好的氧化峰,这归因于NOMC的开放孔结构以及氮掺杂碳骨架上边缘平面缺陷位点的增加。制备了使用NOMC - 1000改性电极的电化学传感器,并证明其在自来水样品分析中是可行的。NOMC还用作高压CO₂存储的吸附剂。氮含量最高的NOMC在273和298K(30bar)下分别表现出最佳的CO₂吸收容量,为800.8和387.6mg/g,优于其他NOMC材料以及一些最近报道的具有良好有序三维孔结构的CO₂吸附剂。此外,这种NOMC对CO₂的亲和力高于对N₂的亲和力,这得益于其多孔碳骨架中较高的氮含量。

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