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Tens of micron-sized unilamellar nanosheets of Y/Eu layered rare-earth hydroxide: efficient exfoliation via fast anion exchange and their self-assembly into oriented oxide film with enhanced photoluminescence

机译:数十微米的Y / Eu层状稀土氢氧化物的单层纳米片:通过快速阴离子交换实现有效剥离并自组装成定向氧化膜增强了光致发光

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摘要

Layered rare-earth hydroxide (LRH) crystals of (Y0.95Eu0.05)2(OH)5NO3·nH2O with a lateral size of ∼ 300 μm and a thickness of ∼ 9 μm have been synthesized via a hydrothermal reaction of mixed nitrate solutions in the presence of mineralizer NH4NO3 at 200 °C for 24 h. LRH exhibits the ability to undergo intercalation and anion exchange with DS (C12H25OSO3) via hydrothermal treatment. Compared with traditional anion exchange at room temperature, hydrothermal processing not only shortens the anion exchange time from 720 to 24 h but also increases the basal spacing. The arrangements of DS in the interlayer of LRH are significantly affected by the DS concentration and reaction temperature, and the basal spacing of the LRH-DS sample in the crystal edge is assumed to be larger than that in the crystal center. A higher DS concentration and reaction temperature both induce more intercalation of DS anions into the interlayer gallery, thus yielding a larger basal spacing. Unilamellar nanosheets with a lateral size of ≽60 μm and a thickness of ∼ 1.6 nm can be obtained by delaminating LRH-DS in formamide. The resultant unilamellar nanosheets are single crystalline. Transparent (Y0.95Eu0.05)2O3 phosphor films with a uniform [111] orientation and a layer thickness of ∼ 90 nm were constructed with the nanosheets as building blocks via spin-coating, followed by proper annealing. The oriented oxide film exhibits a strong red emission at 614 nm (the 5D0–7F2 transition of Eu3+), whose intensity is ∼ 2 times that of the powder form owing to the significant exposure of the (222) facets.
机译:通过硝酸盐溶液的水热反应合成了(Y0.95Eu0.05)2(OH)5NO3·nH2O的层状稀土氢氧化物(LRH)晶体,其横向尺寸约为300μm,厚度约为9μm。在矿化剂NH4NO3存在下于200°C下放置24小时。 LRH具有通过水热处理与DS -(C12H25OSO3 -)进行嵌入和阴离子交换的能力。与室温下传统的阴离子交换相比,水热处理不仅将阴离子交换时间从720缩短至24 h,而且增加了基距。 DS -在LRH夹层中的排列受到DS -浓度和反应温度以及LRH-DS样品在晶体边缘的基础间距的显着影响假设其大于晶体中心的晶体。较高的DS -浓度和反应温度均引起DS -阴离子更多地嵌入层间通道中,从而产生较大的基础间距。通过将LRH-DS分层在甲酰胺中,可以获得横向尺寸约为60μm,厚度约为1.6 nm的单层纳米片。所得的单层纳米片是单晶的。以纳米片作为构建基块,通过旋涂构建具有均匀[111]取向和约90 nm层厚度的透明(Y0.95Eu0.05)2O3荧光粉膜,然后进行适当的退火处理。取向的氧化膜在614 nm处表现出强烈的红色发射(Eu 3 + sup> 5 D0– 7 F 2 跃迁/ sup>),由于(222)小面的显着暴露,其强度约为粉末形式的强度的2倍。

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