首页> 外文期刊>Nanoscale >Manipulation of up-conversion emission in NaYF4 core@shell nanoparticles doped by Er3+, Tm3+, or Yb3+ ions by excitation wavelength-three ions-plenty of possibilities
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Manipulation of up-conversion emission in NaYF4 core@shell nanoparticles doped by Er3+, Tm3+, or Yb3+ ions by excitation wavelength-three ions-plenty of possibilities

机译:在NaYF4操纵上转换发射core@shell Er3 +纳米颗粒掺杂,Tm3 +,或通过激发wavelength-three Yb3 +离子ions-plenty的可能性

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摘要

Nanoparticles (NPs) based on host compound NaYF4 with core@shell structures were synthesised by the precipitation reaction in high-boiling point octadecene/oleic acid solvent. Four laser wavelengths were used (808, 975, 1208, or 1532 nm) for excitation of the obtained NPs. The resulting emission and mechanisms responsible for spectroscopic properties were studied in detail. Depending on NP compositions, i.e. type of doping ion (Er3+, Tm3+, or Yb3+) or presence of dopants in the same or different phases, adjustable up-conversion (UC) could be obtained with emission peaks covering the visible to near-infrared range (475 to 1625 nm). The presented results demonstrated multifunctionality of the prepared NPs. NaYF4:2%Tm3+@NaYF4 NPs exhibited emission at 700 and 1450 nm under 808 nm laser excitation or 800 and 1625 nm emission under 1208 nm laser radiation, as a result of ground- and excited-state absorption processes (GSA and ESA, respectively). However, NaYF4:5%Er3+,2%Tm3+@NaYF4 NPs showed the most interesting properties, as they can convert all studied laser wavelengths due to the absorption of Tm3+ (808, 1208 nm) or Er3+ ions (808, 975, 1532 nm), revealing a photon avalanche process under 1208 nm laser excitation, as well as GSA and ESA at other excitation wavelengths. The NaYF4:2%Tm3+@NaYF4:5%Er3+ NPs revealed the resultant emission properties, as the dopant ions were separated within core and shell phases. The NaYF4:18%Yb3+,2%Tm3+@NaYF4 and NaYF4:18%Yb3+,2%Tm3+@NaYF4:5%Er3+ samples showed the brightest emission, around 800 nm, under 975 nm excitation, though other laser wavelengths allowed for observation of luminescence, as well, especially in NPs with Er3+ in the outer shell, capable of UC under 1532 nm. The presented results highlight the unique and universal properties of lanthanide ions for designing luminescent NPs for a variety of potential applications, such as confocal microscopy.
机译:基于主机复合NaYF4纳米颗粒(NPs)与core@shell结构被合成高沸点的沉淀反应点十八烯/油酸溶剂。使用波长(808、975、1208、1532海里)激发的NPs获得。产生的排放和机制负责详细的光谱特性进行了研究。取决于NP成分,即类型的掺杂离子(Er3 +、Tm3 +或Yb3 +)或掺杂物的存在在相同或不同的阶段,可调上变频(UC)可以获得发射峰覆盖可见近红外范围(475 - 1625海里)。提交结果证明多功能性NPs的准备。发射在700和1450海里808展出纳米激光激发或800和1625海里排放在波长1208纳米的激光辐射,由于地基和激发态吸收过程(分别为GSA和ESA)。NaYF4:5%Er3 + 2% tm3 + @NaYF4 NPs显示最多有趣的性质,因为它们可以转换所有研究了激光波长的吸收Tm3 +(808、1208 nm)或Er3 +离子(808、975、1532海里),露出一个光子雪崩过程在波长1208纳米的激光激发下,GSA和其他欧洲航天局在激发波长。NaYF4:2%Tm3 + @NaYF4:5%Er3 + NPs revealed the合成发射特性,掺杂物离子核心和壳内分离阶段。NaYF4:18%Yb3 +, 2%Tm3 @NaYF4:5%Er3 +样本那里最亮的发射,800纳米左右,在975年纳米激发,不过其他激光波长允许观察发光,特别是在NPs Er3 +外壳,加州大学在1532 nm的能力。结果突出了独特而普遍的镧系元素离子的特性进行设计发光NPs为各种不同的潜力应用程序,比如共焦显微镜。

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