探讨Sm3+浓度对NaLaxSm1-x (MoO4)2纳米荧光粉结构稳定性、形貌可调性、光学性能和发光效率的影响

Sahaya Dennish Babu George*, Shafeera Nirathintavida Nittakaran, Judith Jayarani Arockiasamy, Swetha Madamala, Lavanya Narasimman, Sarojini Kuppamuthu and Sahaya Shajan Xavier, 
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引用次数: 0

摘要

在这项工作中,采用高效油酸辅助水热法大规模合成了NaLaxSm1-x (MoO4)2 (x = 1,0.75, 0.50, 0.25和0)纳米荧光粉。这些纳米荧光粉以纯四方相结晶,表现出从球形纳米颗粒到纳米片和纳米孔结构的显著形态演变。油酸作为封盖剂和形状调节剂的作用对调整形貌至关重要,从而影响光学性能。通过扫描电镜和透射电镜的结构和元素分析证实了合成材料的明确特征和化学计量组成。除了它们迷人的结构多样性,这些纳米荧光粉在可见区域表现出强烈和可调的发光,由Sm3+浓度控制。在紫外线激发下,它们发出强烈的橙红色光,这归因于Sm3+离子的特征f-f跃迁。光致发光分析进一步证实了发光效率的提高,优化的Sm3+掺杂浓度为光电应用提供了优越的量子效率。NaLaxSm1-x (MoO4)2 (x = 1、0.75、0.50、0.25和0)纳米荧光粉具有调制形貌和发光特性的能力,具有很高的应用前景。这项工作为多功能发光材料铺平了道路,这些材料具有定制的特性,可用于尖端光子学,led,安全保护和微纳米光学功能器件应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Exploring the Role of Sm3+ Concentration in Controlling the Structural Stability, Morphology Tunability, Optical Performance, and Luminescent Efficiency of NaLaxSm1–x(MoO4)2 Nanophosphors

Exploring the Role of Sm3+ Concentration in Controlling the Structural Stability, Morphology Tunability, Optical Performance, and Luminescent Efficiency of NaLaxSm1–x(MoO4)2 Nanophosphors

In this work, a highly effective oleic acid assisted hydrothermal method has been employed for the large-scale synthesis of NaLaxSm1–x(MoO4)2 (x = 1, 0.75, 0.50, 0.25, and 0) nanophosphors. These nanophosphors crystallize in a pure tetragonal phase, exhibiting a remarkable morphological evolution from spherical nanoparticles to nanoplatelets and nanorice structures. The role of oleic acid as both a capping agent and shape modifier is crucial in tailoring the morphology, thereby influencing the optical properties. Structural and elemental analyses through SEM and TEM confirm the well-defined features and stoichiometric composition of the synthesized materials. Beyond their fascinating structural versatility, these nanophosphors demonstrate intense and tunable luminescence in the visible region, governed by the Sm3+ concentration. Under ultraviolet excitation, they emit a strong orange-red light, attributed to the characteristic f–f transitions of Sm3+ ions. Photoluminescence analysis further confirms the enhancement in luminescence efficiency, with an optimized Sm3+ doping concentration yielding superior quantum efficiency for optoelectronic applications. The ability to modulate the morphology and luminescence properties makes NaLaxSm1–x(MoO4)2 (x = 1, 0.75, 0.50, 0.25, and 0) nanophosphors highly promising for advanced applications. This work paves the way for multifunctional luminescent materials with tailored properties for cutting-edge photonics, LEDs, security protection, and micronano optical functional device applications.

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来源期刊
ACS Applied Optical Materials
ACS Applied Optical Materials 材料科学-光学材料-
CiteScore
1.10
自引率
0.00%
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0
期刊介绍: ACS Applied Optical Materials is an international and interdisciplinary forum to publish original experimental and theoretical including simulation and modeling research in optical materials complementing the ACS Applied Materials portfolio. With a focus on innovative applications ACS Applied Optical Materials also complements and expands the scope of existing ACS publications that focus on fundamental aspects of the interaction between light and matter in materials science including ACS Photonics Macromolecules Journal of Physical Chemistry C ACS Nano and Nano Letters.The scope of ACS Applied Optical Materials includes high quality research of an applied nature that integrates knowledge in materials science chemistry physics optical science and engineering.
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