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通过 8-羟基喹啉-5-磺酸的表面螯合作用实现 Mn2+掺杂 ZnS 纳米晶体的白光发射。

White light emission from Mn2 + doped ZnS nanocrystals through the surface chelating of 8-hydroxyquinoline-5-sulfonic acid.

机构信息

Institute of Chemistry, Northeast Normal University, Changchun, People's Republic of China.

出版信息

Nanotechnology. 2010 Mar 19;21(11):115702. doi: 10.1088/0957-4484/21/11/115702. Epub 2010 Feb 22.

DOI:10.1088/0957-4484/21/11/115702
PMID:20173244
Abstract

White light emitting semiconductor nanocrystals (NCs) have been successfully synthesized from 8-hydroxyquinoline-5-sulfonic acid (HQS) decorated manganese doped ZnS NCs through fine tuning the surface-coordination emission and dopant emission of the NC host. The HQS functionalized manganese doped ZnS NCs (QS-ZnS:Mn), with a cubic crystal structure, have the same diameter of about 4.0 nm as ZnS:Mn NCs without HQS. The intensity of the surface-coordination emission peak increased with increasing HQS content or augmenting excited wavelength. The emission of white light was achieved by carefully controlling the dosage of HQS in NCs and appropriately tuning the excited wavelength. The color coordinates (0.35, 0.34) for the efficient white light emitting NCs were very close to the ideal Commission Internationale de l'Eclairage (CIE) chromaticity coordinates for pure white light (0.33, 0.33). The photoluminescence (PL) decay study revealed that the white light emitting NCs exhibited maximum lifetime values at different emission peaks for different NC samples. The study results also indicated that the HQS molecules were attached to the surface of ZnS:Mn NCs in a single coordination fashion due to the steric hindrance effect of the special spherical surface of NCs, which made the QS-ZnS:Mn NCs possess stable and high fluorescent properties in different organic solvents as compared with the conventional small molecule complexes.

摘要

通过精细调整 NC 主晶格的表面配位发射和掺杂发射,成功地从 8-羟基喹啉-5-磺酸(HQS)修饰的锰掺杂 ZnS NC 中合成了发白光的半导体纳米晶体(NCs)。具有立方晶体结构的 HQS 功能化锰掺杂 ZnS NCs(QS-ZnS:Mn)与没有 HQS 的 ZnS:Mn NCs 具有相同的约 4.0nm 的直径。表面配位发射峰的强度随着 HQS 含量的增加或激发波长的增加而增加。通过仔细控制 NCs 中 HQS 的用量并适当调整激发波长,实现了白光发射。对于高效发白光的 NCs,其色坐标(0.35,0.34)非常接近纯白光的国际照明委员会(CIE)色度坐标(0.33,0.33)。光致发光(PL)衰减研究表明,发白光的 NCs 在不同 NC 样品的不同发射峰处表现出最大的寿命值。研究结果还表明,由于 NC 特殊球形表面的空间位阻效应,HQS 分子以单配位方式附着在 ZnS:Mn NCs 的表面上,这使得 QS-ZnS:Mn NCs 在不同有机溶剂中具有稳定且高的荧光性能,与传统的小分子配合物相比。

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