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An Anion-Induced Hydrothermal Oriented-Explosive Strategy for the Synthesis of Porous Upconversion Nanocrystals

机译:阴离子诱导的水热定向炸药策略合成多孔上转换纳米晶体

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摘要

Rare-earth (RE)-doped upconversion nanocrystals (UCNCs) are deemed as the promising candidates of luminescent nanoprobe for biological imaging and labeling. A number of methods have been used for the fabrication of UCNCs, but their assembly into porous architectures with desired size, shape and crystallographic phase remains a long-term challenging task. Here we report a facile, anion-induced hydrothermal oriented-explosive method to simultaneously control size, shape and phase of porous UCNCs. Our results confirmed the anion-induced hydrothermal oriented-explosion porous structure, size and phase transition for the cubic/hexagonal phase of NaLuF4 and NaGdF4 nanocrystals with various sizes and shapes. This general method is very important not only for successfully preparing lanthanide doped porous UCNCs, but also for clarifying the formation process of porous UCNCs in the hydrothermal system. The synthesized UCNCs were used for in vitro and in vivo CT imaging, and could be acted as the potential CT contrast agents.
机译:稀土(RE)掺杂的上转换纳米晶体(UCNC)被认为是用于生物成像和标记的发光纳米探针的有前途的候选者。 UCNC的制造已经使用了许多方法,但是将它们组装成具有所需尺寸,形状和结晶相的多孔结构仍然是一项长期的挑战性任务。在这里,我们报告了一种简便的,阴离子诱导的水热定向爆炸方法,可同时控制多孔UCNC的尺寸,形状和相。我们的结果证实了各种尺寸和形状的NaLuF4和NaGdF4纳米晶立方/六方相的阴离子诱导水热定向爆炸多孔结构,尺寸和相变。这种通用方法不仅对成功制备掺杂镧系元素的多孔UCNC非常重要,而且对于弄清水热系统中多孔UCNC的形成过程也非常重要。合成的UCNCs用于体外和体内CT成像,可以作为潜在的CT造影剂。

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