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Sonication-Assisted Synthesis of β-Mercuric Sulfide Nanoparticles

机译:超声辅助合成β-汞硫化物纳米粒子

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摘要

The nanoscale semiconductor β‐mercuric sulphide (HgS) has promising applications in electronic and optical fields. Continued development of synthesis methods is needed to expand approaches that produce uniform particles, while avoiding reagents of high toxicity and ecological impact. A solvent‐based approach was developed using mercuric chloride and elemental sulphur as the mercury and chalcogenide sources. Ethanol was used as the solvent and sodium hydroxide as the hydrolysis reagent. Use of mild sonication resulted in smaller particles (average 11nm diameter) than without sonication treatment (average 17nm diameter) and continuous nitrogen purging reduced the surface oxygen content of the particles from approximately 25% to 6%. Particle characterization methods included TEM, XRD, XPS, UV‐visible absorbance spectroscopy and DLS. The nanoparticles were typically spheres of 10‐15nm in diameter. Aggregates formed in aqueous solutions tended to be in the range of 100nm or more. The overall process can be performed simply at room temperature and is comparatively free of toxic chemical hazards. The process does not include surfactants or other stabilizers that could potentially contaminate the nanocrystals. In principle, the method could be applied to synthesis of other metal chalcogenide nanoparticles.
机译:纳米级半导体β-硫化汞(HgS)在电子和光学领域具有广阔的应用前景。需要继续发展合成方法以扩展产生均匀颗粒的方法,同时避免高毒性和生态影响的试剂。以氯化汞和元素硫为汞和硫族化物来源,开发了一种基于溶剂的方法。使用乙醇作为溶剂,使用氢氧化钠作为水解试剂。与不使用超声处理(平均17nm直径)相比,使用温和的超声处理可产生更小的颗粒(平均直径为11nm),并且连续的氮气吹扫将颗粒的表面氧含量从大约25%降至6%。颗粒表征方法包括TEM,XRD,XPS,紫外可见吸收光谱和DLS。纳米颗粒通常是直径为10-15nm的球体。在水溶液中形成的聚集体倾向于在100nm或更大的范围内。整个过程可以简单地在室温下进行,并且相对没有毒性化学危害。该方法不包括可能会污染纳米晶体的表面活性剂或其他稳定剂。原则上,该方法可以应用于合成其他金属硫属化物纳米颗粒。

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