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Impact electrochemistry: colloidal metal sulfide detection by cathodic particle coulometry

机译:冲击电化学:通过阴极粒子库仑法检测胶体金属硫化物

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The determination of the size and concentration of colloidal nano and microparticles is of paramount importance to modern nanoscience. Application of the particle collision technique on metal and metal oxide nanoparticles has been intensively explored over the past decade owing to its ability to determine the particle size and concentration via reactions including the inherent oxidation or the reduction of nanoparticles as well as surface reactions catalysed by the nanoparticles. Transition metal dichalcogenide particles were previously quantified using the anodic (oxidative) particle coulometry method. Here we show that cathodic (reductive) particle coulometry can be favorably used for the detection of metal sulfide colloidal particles. The detection of sulfides of cobalt and lead was performed using the particle collision technique in this work. The presence of spikes confirmed the viability of detecting new and larger particles from compounds using reductive (cathodic) potentials. Such an expansion of the impact particle coulometry method will be useful and applicable to the determination of concentration and size of colloidal metal sulfide nanoparticles in general.
机译:胶体纳米和微粒的大小和浓度的确定对现代纳米科学至关重要。过去十年来,由于粒子碰撞技术能够通过反应(包括固有的氧化或还原纳米粒子以及由纳米粒子催化的表面反应)确定粒径和浓度,因此在金属和金属氧化物纳米粒子上进行了广泛的研究。纳米粒子。预先使用阳极(氧化)粒子库仑法对过渡金属二卤化钨粒子进行了定量。在这里,我们表明,阴极(还原)粒子库仑法可以很好地用于金属硫化物胶体粒子的检测。在这项工作中,使用粒子碰撞技术进行了钴和铅的硫化物的检测。尖峰的存在证实了使用还原性(阴极)电势检测化合物中新的更大颗粒的可行性。冲击粒子库仑法的这种扩展将是有用的,并且通常可用于确定胶体金属硫化物纳米粒子的浓度和尺寸。

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