Kovalenko Maksym V, Kaufmann Erich, Pachinger Dietmar, Roither Jürgen, Huber Martin, Stangl Julian, Hesser Günter, Schäffler Friedrich, Heiss Wolfgang
Institute of Semiconductor and Solid State Physics, Johannes Kepler University, Linz A-4040 Linz, Austria.
J Am Chem Soc. 2006 Mar 22;128(11):3516-7. doi: 10.1021/ja058440j.
A convenient, aqueous-based synthesis of stable HgTe nanocrystals with widely size-tunable room temperature emission between wavelengths of 1.2 to 3.7 mum is demonstrated. By the choice of the thiols, applied as stabilizers, we optimized the growth dynamics, the luminescence quantum yields (up to 40%), and a ligand-exchange procedure, required to transfer the nanocrystals from water to nonpolar organic solvents. The latter is greatly improved and facilitated by the use of mercaptoethylamine as initial stabilizer. The possibility to tune the HgTe nanocrystal sizes from 3 to 12 nm and to control their surface functionalities (hydrophobic and hydrophilic) makes them very promising for the development of infrared optical devices, emitting in the wavelength region between the telecommunications and the molecular vibrations.
本文展示了一种便捷的水相合成法,可制备出稳定的碲化汞纳米晶体,其室温发射波长在1.2至3.7微米之间,尺寸可广泛调节。通过选择用作稳定剂的硫醇,我们优化了生长动力学、发光量子产率(高达40%)以及将纳米晶体从水相转移至非极性有机溶剂所需的配体交换过程。使用巯基乙胺作为初始稳定剂极大地改进并简化了后者。碲化汞纳米晶体尺寸可在3至12纳米之间调节,并能控制其表面功能(疏水性和亲水性),这使其在红外光学器件的开发中极具潜力,可在电信波长区域和分子振动波长区域之间发光。