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设计并简便合成一系列氮化钴(CoN)纳米催化剂作为非酶葡萄糖传感器:材料结构对电催化活性影响的比较研究。

Designing and facilely synthesizing a series of cobalt nitride (CoN) nanocatalysts as non-enzymatic glucose sensors: A comparative study toward the influences of material structures on electrocatalytic activities.

机构信息

Key Laboratory of Nanobiosensing and Nanobioanalysis at Universities of Jilin Province, Department of Chemistry, Northeast Normal University, Changchun, Jilin Province 130024, PR China.

National and Local Joint Engineering Laboratory for Lithium-ion Batteries and Materials Preparation Technology, Key Laboratory of Advanced Battery Materials of Yunnan Province, Faculty of Metallurgical and Energy Engineering, Kunming University of Science and Technology, Kunming 650093, PR China.

出版信息

Talanta. 2018 May 1;181:154-164. doi: 10.1016/j.talanta.2017.12.082. Epub 2017 Dec 27.

Abstract

Designing high-efficiency electrocatalysts for glucose concentration detection plays a pivotal role in developing various non-enzymatic glucose detection devices. Herein, we have successfully designed and synthesized various cobalt nitrides (CoN) by using different weak bases (i.e. hexamethylenetetramine (HMT), urea, and ammonium hydroxide (AH)) through nitridation treatment in ammonia (NH) atmosphere. Physical characterization results demonstrate that CoN-NSs (nanosheets) with vast meso/macropores and large BET surface are successfully constructed once adding carbon paper and HMT into precursors. As the synergistic effect of metallic character of CoN phase excellent electroconductibility of pyrolytic carbon, and large surface area, CoN-NSs surfaces can form more Co active sites in electrochemical reaction processes. Meanwhile, the abundant meso/macroporous structures constructed in CoN-NSs further promoted its mass transfer ability. Benefitting from the above mentioned advantages, CoN-NSs therefore exhibit more excellent glucose oxidation ability than another three control samples (i.e. CoN-HMT, CoN-Urea and CoN-AH). When used for glucose detection, the optimal CoN-NSs display excellent detection parameters as well, such as: a wide linear range of 0.6-10.0mM, a large sensitivity of 1137.2uAcmmM glucose, a low detection limit of 0.1µM, a small response time of 1.7s, good reproducibility and stability, and the excellent anti-interference to other electroactive molecules and Cl. Upon utilized for measuring glucose concentrations in human blood serum samples, the detection results on CoN-NSs are accurate and satisfying as well. This work opens a new possibility for boosting electrochemical catalysis abilities of CoN samples by the structure design.

摘要

设计用于葡萄糖浓度检测的高效电催化剂在开发各种非酶葡萄糖检测设备中起着关键作用。在此,我们通过在氨(NH )气氛中进行氮化处理,成功地使用不同的弱碱(即六亚甲基四胺(HMT)、尿素和氨(AH))设计并合成了各种钴氮化物(CoN)。物理特性分析结果表明,一旦在前驱体中加入碳纸和 HMT,CoN-NSs(纳米片)就可以成功构建具有大的介孔/大孔和大 BET 表面的结构。由于 CoN 相的金属特性、热解碳的优异导电性以及大表面积的协同效应,CoN-NSs 表面在电化学反应过程中可以形成更多的 Co 活性位。同时,在 CoN-NSs 中构建的丰富的介孔/大孔结构进一步促进了其传质能力。得益于上述优点,CoN-NSs 因此表现出比另外三个对照样品(即 CoN-HMT、CoN-Urea 和 CoN-AH)更优异的葡萄糖氧化能力。用于葡萄糖检测时,最佳的 CoN-NSs 还具有出色的检测参数,例如:宽线性范围为 0.6-10.0mM、灵敏度为 1137.2uAcmmM 葡萄糖、低检测限为 0.1µM、响应时间为 1.7s、良好的重现性和稳定性,以及对其他电活性分子和 Cl 的优异抗干扰性。用于测量人血清样品中的葡萄糖浓度时,CoN-NSs 的检测结果也准确且令人满意。这项工作通过结构设计为提高 CoN 样品的电化学催化能力开辟了新的可能性。

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