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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >3-Mercaptobutyric Acid as an Effective Capping Agent for Highly Luminescent CdTe Quantum Dots: New Insight into the Selection of Mercapto Acids
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3-Mercaptobutyric Acid as an Effective Capping Agent for Highly Luminescent CdTe Quantum Dots: New Insight into the Selection of Mercapto Acids

机译:3-巯基丁酸作为高发光CdTe量子点的有效封端剂:巯基酸选择的新见解

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CdTe quantum dots (QDs) were synthesized by a modified hydrothermal method with Na2TeO3 as the Te source. Thioglycolic acid (TGA), thiolactic acid (TLA), 3-mercaptopropionic acid (MPA), 3-mercaptobutyric acid (3MBA), 4-mercaptobutyric acid (MBA), and 5-mercaptova-leric add (MVA) were used. Their effects on the growth and fluorescence of as-synthesized QDs were investigated: Detrimental precursor aggregation when using TGA-like molecules (TGA and L-cysteine) due to their special secondary coordination was observed and further confirmed by comparing with DL-homocysteine and N-acetyl-L-cysteine.The aggregation could be suppressed by using a bulky methyl group as a side chain to confine the carboxyl group, that is, TLA Moreover, MPA was confirmed as a better stabilizer compared with linear TGA, MBA, and MVA probably because of its suitable balance between hydrophilicity and hydrophobicity. Accordingly, we designed and synthesized 3MBA that has the same main chain length as MPA but with a side methyl group as TLA 3MBA-modified CdTe QDs exhibited an excellent optical property with a quantum yield of 71%, much higher than that of MPA and TGA Preliminary results of CdSe QDs confirmed the versatility of 3MBA Our results uncovered the possible origin of the advantages of mercapto acids with a methyl side chain and a suitable chain length.
机译:以Na2TeO3为Te源,采用改进的水热法合成了CdTe量子点。使用了巯基乙酸(TGA),巯基乳酸(TLA),3-巯基丙酸(MPA),3-巯基丁酸(3MBA),4-巯基丁酸(MBA)和5-巯基-leric add(MVA)。研究了它们对合成QDs的生长和荧光的影响:观察到了使用TGA样分子(TGA和L-半胱氨酸)时由于它们特殊的二级配位而造成的有害前体聚集,并通过与DL-高半胱氨酸和N的比较进一步证实-乙酰基-L-半胱氨酸。可以通过使用大体积的甲基作为侧链限制羧基(即TLA)来抑制聚集,此外,与线性TGA,MBA和MVA相比,MPA被证实是更好的稳定剂。可能是由于其在亲水性和疏水性之间的适当平衡。因此,我们设计并合成了具有与MPA相同的主链长度但具有与TLA相同的侧甲基的3MBA。3MBA修饰的CdTe QD表现出优异的光学性能,量子产率为71%,远高于MPA和TGA CdSe QD的初步结果证实了3MBA的多功能性。我们的结果揭示了具有甲基侧链和适当链长的巯基酸优势的可能来源。

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