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Study on Dopamine Electrochemical Sensing Based on Au@MoS_(2)
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作者 Ning An Ni Su +2 位作者 Xin-Ran Li Jian-Yu Liu Qi-Yan Wang 《电化学(中英文)》 北大核心 2025年第3期35-46,共12页
Dopamine(DA)is a vital neurotransmitter,and accurate detection of its concentration is critical for both clinical diagnos-tics and neuroscience research.Due to its electrochemical activity,DA is commonly detected usin... Dopamine(DA)is a vital neurotransmitter,and accurate detection of its concentration is critical for both clinical diagnos-tics and neuroscience research.Due to its electrochemical activity,DA is commonly detected using electrochemical methods,which are favored for their simplicity,fast response time,and suitability for in vivo analysis.In this work,a highly sensitive DA electrochemical sensor was developed using an Au@MoS_(2)composite,created by modifying molybdenum disulfide(MoS_(2))nanosheets with gold nanoparticles through HAuCl_(4) reduction,and it was aimed at enhancing DA adsorption and improving detection performance.Scanning Electron Microscopy(SEM),transmission electron microscopy(TEM),Energy Dispersive Spectroscopy(EDS),X-ray photoelectron spectroscopy(XPS)and X-ray Diffraction(XRD)confirmed the suc-cessful synthesis of Au@MoS_(2)and the uniform distribution of gold nanoparticles across the MoS_(2)nanosheets.Then,the electrochemical characterization demonstrated that the Au@MoS_(2)/GCE exhibited distinct oxidation peaks in a 10μmol·L^(-1)DA solution,with significantly enhanced electrochemical activity compared to both unmodified GCE and pristine MoS_(2).Furthermore,differential pulse voltammetry(DPV)further revealed a strong linear relationship between DA concentration and the current response in the range of 800 nmol·L^(-1)to 10μmol·L^(-1),with a low detection limit(LOD)of 78.9 nmol·L^(-1)(S/N=3).Additionally,the sensor showed excellent selectivity against other interfering substances.Moreover,the laser-induced Au@MoS_(2)(LIAu@MoS_(2)),with its abundance of negatively charged surface defects,enabled the ultra-sensitive detection of the ultra-low concentrations of DA.In conclusion,the successfully fabricated Au@MoS_(2)based sensor offers advantages such as low cost,ease of operation,and scalability,making it a promising candidate for biosensing applications due to its enhanced DA detection capabilities. 展开更多
关键词 DOPAMINE Electrochemical sensor Molybdenum disulfide Gold nanoparticles
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地铁车站发生火灾时施加水平细水雾幕抑制顶棚射流火焰的有效性 被引量:3
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作者 钟委 马志欣 +2 位作者 许少刚 梁天水 赵军 《中国铁道科学》 EI CAS CSCD 北大核心 2020年第1期126-133,共8页
针对施加竖向细水雾幕的缺陷,对水雾喷头进行改进,使之产生水平向的细水雾幕。以某地铁车站为原型设计试验台,通过室内试验研究水平雾幕对地铁车站火灾的挡烟、隔热及顶棚射流火焰抑制、烟气沉降抑制的有效性。结果表明:施加水平雾幕具... 针对施加竖向细水雾幕的缺陷,对水雾喷头进行改进,使之产生水平向的细水雾幕。以某地铁车站为原型设计试验台,通过室内试验研究水平雾幕对地铁车站火灾的挡烟、隔热及顶棚射流火焰抑制、烟气沉降抑制的有效性。结果表明:施加水平雾幕具有较大的水平动量,雾通量在喷头前方呈均匀分布,而施加竖向雾幕其雾通量集中在喷头下方;施加水平雾幕对顶棚射流火焰具有显著抑制作用,火焰长度减小约40%,且火焰不能穿越雾幕;施加水平雾幕的隔热效率均比施加竖向雾幕高10%左右,且施加水平雾幕对烟气层的扰动更小,雾幕作用区烟气沉降幅度较小;施加水平雾幕后方有明显的烟气分层现象,且烟气最高温度、烟气出口速度均小于施加竖向雾幕。 展开更多
关键词 地铁车站 防火减灾 水平向细水雾幕 顶棚射流火焰 烟气温度 烟气沉降
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