Influence of the nature of the dispersion medium on the optical properties of CdTe nanocrystals during sedimentation deposition

О. Kapush, I. O. Mazarchuk, L. І. Trіshchuk, V. Y. Morozovska, S. Boruk, S. Budzulyak, D. Korbutyak, B. N. Kulchitsky, O. Kosinov, Rashad Gabil Abaszade
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引用次数: 2

Abstract

The physicochemical properties of low-dimensional structures based on CdTe obtained are investigated by the method of colloidal synthesis. The analysis of the optical absorption spectra and the luminescence intensity of the CdTe colloidal NCs showed that the nature of the dispersion medium significantly affects their optical properties. The optical absorption spectra of the CdTe NK fractions obtained by dissolving the flocs in deionized water and in deionized water with the addition of NaOH have been shown to have the same character. However, the addition of NaOH results in a shift of the absorption maximum by 8-12 nm into the longwave region. This suggested that the addition of NaOH to the colloidal solution of NK CdTe during sedimentation deposition leads to the aggregation of cadmium telluride particles. The addition of NaOH results in the quenching of photoluminescence. It can be assumed that during the sedimentation deposition there is a leaching of THC to a critical concentration, therefore, due to insufficient stabilization of the surface of the NC CdTe, a rapid aggregation of particles occurs and a loss of sedimentation stability of the solution is observed, which causes the PL quenching. The analysis of the optical absorption and photoluminescence spectra of the fractions of the colloidal solution of NC CdTe obtained by using DMF as a dispersion medium during the sedimentation deposition leads to the conclusion that the nature of the dispersion medium significantly affects the optical properties of CdTe NC. The maxima of the OP spectra corresponding to the first exciton transition of all fractions are shifted to the longwave region and change their shape compared to the corresponding spectra for the aqueous fractions. In this case, the PL intensity of the first and second fractions of CdTe NC in DMF is approximately 100 ppm. exceeds the PL intensity of the aqueous fractions, which can be explained by the fact that DMF, unlike deionized water, does not wash out THC from the surface of the CdTe NC.
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色散介质性质对沉积过程中CdTe纳米晶体光学性能的影响
采用胶体合成的方法,研究了所制备的低维CdTe的物理化学性质。CdTe胶体纳米材料的光学吸收光谱和发光强度分析表明,色散介质的性质对其光学性能有显著影响。将絮凝体溶解在去离子水和加入NaOH的去离子水中得到的CdTe NK组分的光学吸收光谱具有相同的特征。然而,NaOH的加入导致吸收最大值向长波区移动了8-12 nm。这表明,在沉积过程中,在NK CdTe胶体溶液中加入NaOH会导致碲化镉颗粒聚集。NaOH的加入导致了光致发光的猝灭。可以认为,在沉淀沉积过程中,THC的浸出达到临界浓度,因此,由于NC CdTe表面稳定性不足,导致颗粒快速聚集,溶液沉降稳定性丧失,导致PL猝灭。通过对DMF作为分散介质在沉积过程中得到的NC CdTe胶体溶液组分的光吸收光谱和光致发光光谱的分析,得出了分散介质的性质对CdTe NC光学性能有显著影响的结论。与水相馏分的OP谱相比,各馏分的第一激子跃迁对应的OP谱的最大值都移到了长波区,并改变了它们的形状。在这种情况下,DMF中CdTe NC的第一和第二部分的PL强度约为100ppm。超过了水组分的PL强度,这可以解释为DMF不像去离子水,不会从CdTe NC表面洗掉THC。
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