Ghosh Srabanti, Saha Abhijit
UGC-DAE Consortium for Scientific Research, Kolkata Centre, III/LB-8, Bidhannagar, Kolkata, 700098 India.
Nanoscale Res Lett. 2009 May 22;4(8):937-941. doi: 10.1007/s11671-009-9339-1.
In order to couple high cellular uptake and target specificity of dendrimer molecule with excellent optical properties of semiconductor nanoparticles, the interaction of cysteine-capped CdTe quantum dots with dendrimer was investigated through spectroscopic techniques. NH(2)-terminated dendrimer molecule quenched the photoluminescence of CdTe quantum dots. The binding constants and binding capacity were calculated, and the nature of binding was found to be noncovalent. Significant decrease in luminescence intensity of CdTe quantum dots owing to noncovalent binding with dendrimer limits further utilization of these nanoassemblies. Hence, an attempt is made, for the first time, to synthesize stable, highly luminescent, covalently linked CdTe-Dendrimer conjugate in aqueous medium using glutaric dialdehyde (G) linker. Conjugate has been characterized through Fourier transform infrared spectroscopy and transmission electron microscopy. In this strategy, photoluminescence quantum efficiency of CdTe quantum dots with narrow emission bandwidths remained unaffected after formation of the conjugate.
为了将树枝状大分子分子的高细胞摄取率和靶向特异性与半导体纳米颗粒优异的光学性质相结合,通过光谱技术研究了半胱氨酸封端的CdTe量子点与树枝状大分子的相互作用。氨基端基树枝状大分子分子猝灭了CdTe量子点的光致发光。计算了结合常数和结合容量,发现结合性质为非共价。由于与树枝状大分子的非共价结合,CdTe量子点的发光强度显著降低,限制了这些纳米组装体的进一步应用。因此,首次尝试使用戊二醛(G)连接剂在水性介质中合成稳定、高发光、共价连接的CdTe-树枝状大分子共轭物。共轭物已通过傅里叶变换红外光谱和透射电子显微镜进行了表征。在该策略中,形成共轭物后,具有窄发射带宽的CdTe量子点的光致发光量子效率未受影响。