Cao Huaqiang, Wang Guozhi, Zhang Sichun, Zhang Xinrong, Rabinovich Daniel
Department of Chemistry, Tsinghua University, Beijing 100084, People's Republic of China.
Inorg Chem. 2006 Jun 26;45(13):5103-8. doi: 10.1021/ic060440c.
This paper reports wurtzite-type CdS nanostructures synthesized via a hydrothermal reaction route using dithiol glycol as the sulfur source. The reaction time was found to play an important role in the shape of the CdS nanocrystals: from dots to wires via an oriented attachment mechanism. This work has enabled us to generate nanostructures with controllable geometric shapes and structures and thus optical properties. The CdS nanostructures show a hexagonal wurtzite phase confirmed by X-ray diffraction and show no evidence for a mixed phase of cubic symmetry. The Raman peak position of the characteristic first-order longitudinal optical phonon mode does not change greatly, and the corresponding full width at half-maximum is found to decrease with the CdS shape, changing from nanoparticles to nanowires because of crystalline quality improvement. The photoluminescence measurements indicate tunable optical properties just through a change in the shape of the CdS nanocrystals; i.e., CdS nanoparticles show a band-edge emission at approximately 426 nm in wavelength, while the CdS nanowires show a band-edge emission at approximately 426 nm as well as a weaker trap-state green emission at approximately 530 nm in wavelength. These samples provide an opportunity for the study of the evolution of crystal growth and optical properties, with the shape of the nanocrystals varying from nearly spherical particles to wires.
本文报道了通过水热反应路线,以二硫醇二醇作为硫源合成的纤锌矿型硫化镉纳米结构。研究发现,反应时间在硫化镉纳米晶体的形状形成过程中起着重要作用:通过定向附着机制,晶体形状从点状转变为线状。这项工作使我们能够生成具有可控几何形状、结构以及光学性质的纳米结构。经X射线衍射证实,硫化镉纳米结构呈现六方纤锌矿相,未发现立方对称混合相的迹象。特征性一阶纵向光学声子模的拉曼峰位置变化不大,且相应的半高宽随硫化镉形状的改变而减小,从纳米颗粒变为纳米线时,由于晶体质量提高,半高宽减小。光致发光测量表明,仅通过改变硫化镉纳米晶体的形状就能实现光学性质的调控;即,硫化镉纳米颗粒在波长约426nm处呈现带边发射,而硫化镉纳米线在波长约426nm处也呈现带边发射,同时在波长约530nm处有较弱的陷阱态绿色发射。这些样品为研究晶体生长演变和光学性质提供了契机,纳米晶体的形状从近乎球形的颗粒变化到线状。