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Remarkable enhancement of photoluminescence and persistent luminescence of NIR emitting ZnGa2O4:Cr3+ nanoparticles

机译:显着提高Znga2O4:Cr3 +纳米粒子的NIR发光和持续发光的增强

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摘要

Persistent luminescence nanoparticles (NPs) with bright emission and long lifetimes are in high demand owing to their applications in storage media, display devices, bioimaging, security, etc. As a well-known persistent luminescence material, presently available ZnGa2O4:Cr3+ (ZGOC) does not fully serve its purpose with its existing photoluminescence and persistent luminescence properties, particularly for in vivo bioimaging and long-term optical signaling. To improve its persistent luminescence and make it more commercially viable, in this work, we have hydrothermally synthesized ZGOC NPs by fine-tuning their nucleation kinetics and crystal size through (i) controlled urea precipitation, (ii) adjusting the Zn/Ga precursor ratio, and (iii) the addition of ammonium nitrate. Deep red emitting ZGOC NPs with high PL and PerL are realized, and even compared with their counterparts synthesized using precipitants NaOH and NH3. The feasibility of our ZGOC NPs for bioimaging application was further studied by incubating them successfully in mouse embryonic fibroblast cells (NIH 3T3). Overall, high PL and PerL intensities and long lifetimes are achieved for ZGOC NPs by the simple approach of controlled nucleation and crystal engineering, which provides a new pathway to design high quality luminescent materials for multifunctional applications in the areas of health, energy, security and environment.
机译:由于其在储存介质,显示装置,生物分析,安全性等中的应用,具有鲜发光和长寿的持续发光纳米颗粒(NPS)具有很高的需求,作为众所周知的持续发光材料,目前可用的Znga2O4:Cr3 +(Zgoc)不充分用于其现有的光致发光和持续发光性能的目的,特别是在体内生物仿真和长期光学信号中。为了改善其持续发光并使其更加可行,在这项工作中,我们通过微调其成核动力学和晶体尺寸通过(i)控制的尿素沉淀,(ii)调节Zn / Ga前体比来进行水热合成的Zgoc NPS。 ,(iii)添加硝酸铵。利用高PL和Perl的深红色发射Zgoc NPS,甚至与使用沉淀剂NaOH和NH3合成的对应物相比。通过成功在小鼠胚胎成纤维细胞(NIH 3T3)中成功孵育它们,进一步研究了我们ZGOC NPS的可行性。总体而言,通过控制成核和晶体工程的简单方法,为ZGOC NPS实现了高PL和Perl强度和长寿,这为在健康,能源,安全性和安全性和环境。

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