Department of Bio-Nano Science and Engineering, National Key Laboratory of Nano/Micro Fabrication Technology, Institute of Micro-Nano Science and Technology, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, PR China.
Chemistry. 2012 May 7;18(19):5954-69. doi: 10.1002/chem.201102419. Epub 2012 Mar 27.
Herein, we introduce a facile, user- and environmentally friendly (n-octanol-induced) oleic acid (OA)/ionic liquid (IL) two-phase system for the phase- and size-controllable synthesis of water-soluble hexagonal rare earth (RE = La, Gd, and Y) fluoride nanocrystals with uniform morphologies (mainly spheres and elongated particles) and small sizes (<50 nm). The unique role of the IL 1-butyl-3-methylimidazolium hexafluorophosphate (BmimPF(6)) and n-octanol in modulating the phase structure and particle size are discussed in detail. More importantly, the mechanism of the (n-octanol-induced) OA/IL two-phase system, the formation of the RE fluoride nanocrystals, and the distinctive size- and morphology-controlling capacity of the system are presented. BmimPF(6) is versatile in term of crystal-phase manipulation, size and shape maintenance, and providing water solubility in a one-step reaction. The luminescent properties of Er(3+)-, Ho(3+)-, and Tm(3+)-doped LaF(3), NaGdF(4), and NaYF(4) nanocrystals were also studied. It is worth noting that the as-prepared products can be directly dispersed in water due to the hydrophilic property of Bmim(+) (cationic part of the IL) as a capping agent. This advantageous feature has made the IL-capped products favorable in facile surface modifications, such as the classic Stober method. Finally, the cytotoxicity evaluation of NaYF(4):Yb,Er nanocrystals before and after silica coating was conducted for further biological applications.
本文介绍了一种简便、用户友好且环境友好的(正辛醇诱导的)油酸(OA)/离子液体(IL)两相体系,用于可控制备水溶性六方稀土(RE = La、Gd 和 Y)氟化物纳米晶体,其具有均匀的形貌(主要为球体和拉长的颗粒)和较小的尺寸(<50nm)。详细讨论了 IL 1-丁基-3-甲基咪唑六氟磷酸盐(BmimPF(6))和正辛醇在调节相结构和颗粒尺寸方面的独特作用。更重要的是,提出了(正辛醇诱导的)OA/IL 两相体系的形成机制、RE 氟化物纳米晶体的形成以及该体系独特的尺寸和形貌控制能力。BmimPF(6)在晶相操纵、尺寸和形状保持以及在一步反应中提供水溶性方面具有多功能性。还研究了 Er(3+)、Ho(3+)和 Tm(3+)掺杂的 LaF(3)、NaGdF(4)和 NaYF(4)纳米晶体的发光性能。值得注意的是,由于亲水的 Bmim(+)(IL 的阳离子部分)作为封端剂,所制备的产物可以直接分散在水中。这个有利的特性使得 IL 封端产物有利于简便的表面修饰,如经典的 Stober 法。最后,对未涂覆和涂覆二氧化硅的 NaYF(4):Yb,Er 纳米晶体进行了细胞毒性评估,以进一步进行生物应用。