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首页> 外文期刊>Physica, B. Condensed Matter >Micro-Raman and micro-photoluminescence study of bio-conjugated core-shell CdSe/ZnS nanocrystals
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Micro-Raman and micro-photoluminescence study of bio-conjugated core-shell CdSe/ZnS nanocrystals

机译:生物共轭核壳CdSe / ZnS纳米晶体的微拉曼光谱和微光致发光研究

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摘要

The micro-Raman and micro-photoluminescence spectra of non-conjugated and conjugated with antibody against S6K2 commercial CdSe/ZnS quantum dots (QDs) were investigated under different excitation wavelengths and at different temperatures. In the photoluminescence (PL) spectra,the additional PL band shifted on 0.6-0.65 eV to higher energies from the CdSe/ZnS QD exciton PL band is revealed. The relative intensity of this band is found to be several times larger in bio-conjugated QDs, than in the non-conjugated ones. The characteristics of both PL bands (the PL intensity, spectral position and half-width of the PL band) vary similarly under continuous laser light irradiation, storage of the QD samples in the atmospheric ambience as well as during the temperature change. In the Raman spectra recorded under excitation resonant with the high-energy PL band, the additional Raman peaks at about 300 cm~(-1) and 600 cm~(-1), which are close to the frequency of LO and 2LO phonons of bulk CdS, are found. It is proposed that alloyed QDs with chemical composition close to CdS are responsible for the additional high-energy PL band. The possible reasons for the formation of the alloyed QDs are discussed.
机译:研究了在不同激发波长和温度下,非共轭和共轭抗S6K2商业CdSe / ZnS量子点(QDs)抗体的微拉曼光谱和微光致发光光谱。在光致发光(PL)光谱中,显示了从CdSe / ZnS QD激子PL带以0.6-0.65 eV转移到更高能量的附加PL带。发现该带的相对强度在生物共轭QD中比非共轭QD大几倍。两个PL波段的特性(PL强度,PL波段的光谱位置和半宽度)在连续激光辐照,QD样品在大气环境中以及温度变化期间的存储情况下都类似地变化。在高能PL波段激发共振下记录的拉曼光谱中,额外的拉曼峰出现在300 cm〜(-1)和600 cm〜(-1)处,接近LO和2LO声子的频率。找到大量的CdS。有人提出,化学成分接近于CdS的合金QD会引起额外的高能PL谱带。讨论了形成合金量子点的可能原因。

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