首页> 美国卫生研究院文献>Nanoscale Research Letters >Hydrothermal-assisted exfoliation of Y/Tb/Eu ternary layered rare-earth hydroxides into tens of micron-sized unilamellar nanosheets for highly oriented and color-tunable nano-phosphor films
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Hydrothermal-assisted exfoliation of Y/Tb/Eu ternary layered rare-earth hydroxides into tens of micron-sized unilamellar nanosheets for highly oriented and color-tunable nano-phosphor films

机译:Y / Tb / Eu三元层状稀土氢氧化物的水热辅助剥落成数十微米大小的单层纳米片用于高度定向和颜色可调的纳米磷光膜

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摘要

Efficient exfoliation of well-crystallized (Y0.96TbxEu0.04-x)2(OH)5NO3 · nH2O (0 ≤ x ≤ 0.04) layered rare-earth hydroxide (LRH) crystals into tens of micron-sized unilamellar nanosheets has been successfully achieved by inserting water insoluble oleate anions (C17H33COO) into the interlayer of the LRH via hydrothermal anion exchange at 120°C, followed by delaminating in toluene. The intercalation of oleate anions led to extremely expanded interlayer distances (up to approximately 5.2 nm) of the LRH crystals and accordingly disordered stacking of the ab planes along the c-axis and also weakened interlayer interactions, without significantly damaging the ab plane. As a consequence, the thickness of the LRH crystals increased from approximately 1 to 10 μm, exhibiting a behavior similar to that observed from the smectite clay in water. Highly [111]-oriented and approximately 100-nm thick oxide films of >(Y0.96TbxEu0.04-x>)2O3 (0 ≤ x ≤ 0.04) have been obtained through spin-coating of the exfoliated colloidal nanosheets on quartz substrate, followed by annealing at 800°C. Upon UV excitation at 266 nm, the oxide transparent films exhibit bright luminescence, with the color-tunable emission from red to orange, yellow, and then green by increasing the Tb3+ content from x = 0 to 0.04.Electronic supplementary materialThe online version of this article (doi:10.1186/s11671-015-0828-0) contains supplementary material, which is available to authorized users.
机译:已成功实现将结晶良好的(Y0.96TbxEu0.04-x)2(OH)5NO3·nH2O(0≤x≤0.04)层状稀土氢氧化物(LRH)晶体有效剥落为数十微米的单层纳米片通过将水不溶性油酸根阴离子(C17H33COO -)通过120°C的水热阴离子交换插入LRH的中间层,然后在甲苯中分层。油酸根离子的插入导致LRH晶体的层间距离极大扩展(最高达5.2 nm),因此ab平面沿c轴的堆积无序,并且削弱了层间相互作用,而不会显着损坏ab平面。结果,LRH晶体的厚度从大约1微米增加到10微米,表现出与在水中的蒙脱石粘土观察到的行为相似的行为。通过以下方法获得了[strong]( Y0.96TbxEu0.04-x >) 2O3(0≤x≤0.04)的高度[111]取向且约100nm厚的氧化膜。将剥离的胶体纳米片旋涂在石英基板上,然后在800°C退火。在266 nm处受紫外线激发后,氧化物透明膜显示出明亮的发光,通过将Tb 3 + 的含量从x = 0增加到0变为从红色到橙色,黄色和然后绿色的颜色可调发射。 0.04。电子补充材料本文的在线版本(doi:10.1186 / s11671-015-0828-0)包含补充材料,授权用户可以使用。

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