Colloidal synthesis of monodisperse luminescent InP nanocrystals

D. Talapin, A. Rogach, H. Borchert, S. Haubold, M. Haase, H. Weller
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引用次数: 0

Abstract

Luminescent InP nanocrystals were prepared by organometallic approaches using long chain alkylamines, trioctylphosphine and trioctylphosphine oxide as stabilizing and size regulating agents. The nanocrystals were characterized by powder XRD, synchrotron XPS, HRTEM, absorption and luminescence spectroscopy. Nearly monodisperse fractions of InP nanocrystals were isolated by the size-selective precipitation technique. As prepared, InP nanocrystals exhibit very poor photoluminescent properties, however, their PL efficiency can be drastically enhanced by photoetching of the nanoparticle surface with certain fluorine compounds. A new technique of controllable size-selective photoetching of colloidal nanoparticles allowed the preparation of nearly monodisperse fractions of InP nanocrystals with room temperature PL quantum yields of 25-40%. The PL band was tunable from green to near-IR with increasing particle size.
单分散发光InP纳米晶的胶体合成
以长链烷基胺、三辛基膦和氧化三辛基膦为稳定剂和粒径调节剂,采用有机金属法制备了发光纳米晶体。采用粉末XRD、同步加速器XPS、HRTEM、吸收光谱和发光光谱对纳米晶体进行了表征。采用粒径选择沉淀法分离出近单分散的InP纳米晶。在制备过程中,InP纳米晶体表现出非常差的光致发光性能,然而,通过用某些氟化合物对纳米颗粒表面进行光蚀刻,可以大大提高其发光效率。胶体纳米颗粒的可控尺寸选择性光刻新技术使得制备出几乎单分散的InP纳米晶体,其室温PL量子产率为25-40%。随着颗粒尺寸的增大,PL波段从绿色到近红外可调。
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