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通过掺入沸石和激光烧蚀制备的CdP4纳米团簇的光谱和结构

Optical spectra and structure of CdP4 nanoclusters fabricated by incorporation into zeolite and laser ablation.

作者信息

Yeshchenko O A, Dmitruk I M, Koryakov S V, Galak M P

机构信息

Physics Department, National Taras Shevchenko Kyiv University, 2 Akademik Glushkov prosp., 03022 Kyiv, Ukraine.

出版信息

J Phys Chem B. 2005 Nov 3;109(43):20215-9. doi: 10.1021/jp053688g.

Abstract

CdP(4) nanoclusters were fabricated by incorporation into the pores of zeolite Na-X and by deposition of the clusters onto a quartz substrate using the laser ablation-evaporation technique. Absorption and photoluminescence (PL) spectra of CdP(4) nanoclusters in zeolite were measured at temperatures 4.2, 77, and 293 K. Both absorption and PL spectra consist of two blue-shifted bands. We performed DFT calculations to determine the most stable clusters configuration in the size region up to the size of the zeolite Na-X supercage. The bands observed in absorption and PL spectra were attributed to the emission of (CdP(4))(3) and (CdP(4))(4) clusters with binding energies of 3.78 and 4.37 eV per atom, respectively. The Raman spectrum of CdP(4) clusters in zeolite proved the fact of creation of (CdP(4))(3) and (CdP(4))(4) clusters in zeolite pores. The PL spectrum of CdP(4) clusters produced by laser ablation consists of a single band that was attributed to the emission of the (CdP(4))(4) cluster.

摘要

通过将CdP(4)纳米团簇掺入沸石Na-X的孔中,并使用激光烧蚀蒸发技术将团簇沉积到石英衬底上,制备了CdP(4)纳米团簇。在4.2、77和293 K的温度下测量了沸石中CdP(4)纳米团簇的吸收光谱和光致发光(PL)光谱。吸收光谱和PL光谱均由两个蓝移带组成。我们进行了密度泛函理论(DFT)计算,以确定在沸石Na-X超笼尺寸范围内最稳定的团簇构型。在吸收光谱和PL光谱中观察到的谱带分别归因于结合能为每原子3.78和4.37 eV的(CdP(4))(3)和(CdP(4))(4)团簇的发射。沸石中CdP(4)团簇的拉曼光谱证明了在沸石孔中形成了(CdP(4))(3)和(CdP(4))(4)团簇这一事实。通过激光烧蚀产生的CdP(4)团簇的PL光谱由一个单一谱带组成,该谱带归因于(CdP(4))(4)团簇的发射。

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