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Synthesis of N-acetyl-L-cysteine-capped ZnCdSe quantum dots via hydrothermal method and their characterization

机译:水热法合成N-乙酰基-L-半胱氨酸帽的ZnCdSe量子点及其表征

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摘要

Compared with the most studied green-red emitting (530–650 nm) quantum dots (QDs), the preparation of short-wavelength-emitting QDs remains difficult. Besides, one of the representative short-wavelength QDs materials, ZnCdSe, has a shortcoming of high content of toxic cadmium metal. In this paper, we report the synthesis of high-quality water-soluble ZnCdSe QDs via optimized one-step hydrothermal method with a new thiol as ligand, within a short time of 65 min. The emission wavelength of prepared QDs is tunable in the range of 425–540 nm by merely controlling the molar ratio of Cd:Zn or Se:Zn, and the quantum yield reaches 35%. More importantly, the maximum Cd:Zn molar ratio has been reduced to 0.04:1.0, much lower than that reported in the literature (0.5:1.0), resulting in excellent biological compatibility of prepared QDs and thus their promising applications in biological fields. Moreover, the transmission electron microscopy was employed to examine the effect of Cd:Zn ratio on the size of prepared ZnCdSe QDs, which were also characterized by x-ray photoelectron spectroscopy and electron diffraction spectroscopy.
机译:与研究最多的发射绿光(530–650 nm)的量子点(QD)相比,制备短波发射的量子点仍然很困难。另外,代表性的短波量子点材料之一ZnCdSe具有高含量的有毒镉金属的缺点。在本文中,我们报告了在短短65分钟内通过优化的一步水热方法,以一种新的硫醇为配体,合成了高质量的水溶性ZnCdSe量子点。仅通过控制Cd:Zn或Se:Zn的摩尔比,制备的QD的发射波长就可在425–540 nm范围内调节,并且量子产率达到35%。更重要的是,Cd:Zn的最大摩尔比已降低至0.04:1.0,远低于文献报道的(0.5:1.0),从而使制得的QD具有出色的生物相容性,因此在生物领域具有广阔的应用前景。此外,使用透射电子显微镜检查了Cd:Zn比对制备的ZnCdSe QDs尺寸的影响,这也通过X射线光电子能谱和电子衍射光谱进行了表征。

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