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In-situ Electrodeposition of FeCo-MOF on Au Ultramicroelectrode for Highly Sensitive Detection of Epinephrine
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作者 Yan Chen Jian Shang +3 位作者 Si-Yu Wan Xiao-Tong Cui Zhong-Gang Liu Zheng Guo 《电化学(中英文)》 北大核心 2025年第3期25-34,共10页
Metal-organic framework(MOF)nanostructures have emerged as a prominent class of materials in the advancement of electrochemical sensors.The rational design of bimetallic MOF-functionalized microelectrode is of importa... Metal-organic framework(MOF)nanostructures have emerged as a prominent class of materials in the advancement of electrochemical sensors.The rational design of bimetallic MOF-functionalized microelectrode is of importance for improv-ing the electrochemical performance but still in great challenge.In this work,the bimetallic FeCo-MOF nanostructures were assembled onto a gold disk ultramicroelectrode(Au UME,5.2μm in diameter)via an in-situ electrodeposition method,which enhanced the sensitive detection of epinephrine(EP).The in-situ electrodeposited FeCo-MOF exhibited a character-istic nanoflower-like morphology and was uniformly dispersed on the Au UME.The FeCo-MOF/Au UME demonstrated excellent electrochemical performance on the detection of EP with a high sensitivity of 36.93μA·μmol^(-1)·L·cm^(-2)and a low detection limit of 1.28μmol·L^(-1).It can be attributed to the nonlinear diffusion of EP onto the ultra-micro working substrate,coupled with synergistical catalytic activity of the bimetallic Fe,Co within MOF structure.Furthermore,the FeCo-MOF/Au UME has been successful applied to the analysis of EP in human serum samples,yielding high recovery rates.These results not only contribute to the expansion of the research area of electrochemical sensors,but also provide novel insights and directions into the development of high-performance MOF-based electrochemical sensors. 展开更多
关键词 feco-mof Gold disk ultramicroelectrode In-situ electrodeposition Electroanalysis EPINEPHRINE
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高盐含酚废水的降解及其在离子膜电解中的资源化利用
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作者 何文奇 赵经纬 +4 位作者 兰培强 严朝朝 倪杰 韦彦斐 黄梅 《高校化学工程学报》 北大核心 2025年第4期714-723,共10页
高盐有机废水若不能得到有效处理而被任意排放,将会造成环境污染和无机盐的浪费。在“双碳”背景下,高盐废水“零排放”和盐分的高值化再利用已成为该领域的研究重点。由于高盐废水中有机污染物的高效去除是实现脱盐水回用和废水中盐分... 高盐有机废水若不能得到有效处理而被任意排放,将会造成环境污染和无机盐的浪费。在“双碳”背景下,高盐废水“零排放”和盐分的高值化再利用已成为该领域的研究重点。由于高盐废水中有机污染物的高效去除是实现脱盐水回用和废水中盐分资源化利用的前提,文中通过制备金属-有机框架(MOFs)衍生催化剂FeCo-C/N,探究FeCo-C/N+O_(3)催化氧化体系对NaCl质量浓度为310g·L^(-1)、总有机碳(TOC)含量为20~60mg·L^(-1)的高盐含酚废水处理效果,使得氧化后水样的TOC去除率达到65.1%~88.2%,废水中TOC残余含量均小于10mg·L^(-1),满足离子膜电解中对进槽盐水的品质要求。继续将氧化后的高盐废水进行离子膜电解试验,使阳极出槽淡盐水中NaCl质量浓度介于200.0~210.0g·L^(-1),阴极出槽盐水中NaOH质量分数介于32.0%~33.5%,电解过程进行336h后的电流效率和吨碱电耗分别是96.8%和2167.0kW·h,表明处理后的高盐含酚废水在离子膜电解中运行稳定、经济合理,具备良好的资源化利用前景。研究结论能为高盐有机废水大规模应用于离子膜电解工业提供参考。 展开更多
关键词 FeCo-C/N MOFs衍生催化剂 高盐含酚废水 资源化利用 离子膜电解
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