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A novel approach to obtain highly intense self-activated photoluminescence emissions in hydroxyapatite nanoparticles

机译:一种在羟基磷灰石纳米粒子中获得高强度自激光致发光发射的新方法

摘要

Defect-related photoluminescence (PL) in materials have attracted interest for applications including near ultraviolet (NUV) excitable light-emitting diodes and in biomedical field. In this paper, hydroxyapatite [Ca10(PO4)6(OH)2] nanorods with intense PL bands (bluish- and yellowish-white emissions) were obtained when excited under NUV radiation at room temperature. These nanoparticles were synthesized via chemical precipitation at 90 °C followed by distinct heat treatments temperatures (200–800 °C). Intense and broad emission profiles were achieved at 350 °C (380–750 nm) and 400 °C (380–800 nm). UV–Vis spectroscopy revealed band gap energies (5.58–5.78 eV) higher than the excitation energies (~3.54 and ~2.98 eV at 350 and 415 nm, respectively), confirming the contribution of defect energy levels within the forbidden zone for PL emissions. The structural features were characterized by X-ray diffraction, Rietveld refinement, thermogravimetric analysis, and Fourier transform infrared spectroscopy. By means of these techniques, the relation between structural order-disorder induced by defects, chemical reactions at both lattice and surface of the materials as well as the PL, without activator centers, was discussed in details.
机译:材料中与缺陷相关的光致发光(PL)已引起人们的兴趣,包括近紫外(NUV)可激发发光二极管和生物医学领域的应用。在本文中,当在室温下在NUV辐射下激发时,获得具有强烈PL带(蓝白色和黄白色发射)的羟基磷灰石[Ca10(PO4)6(OH)2]纳米棒。这些纳米颗粒是通过在90°C下化学沉淀,然后经过不同的热处理温度(200–800°C)合成的。在350°C(380–750 nm)和400°C(380–800 nm)时可获得强且宽的发射曲线。 UV-Vis光谱显示带隙能(5.58-5.78 eV)高于激发能(在350和415 nm处分别为〜3.54和〜2.98 eV),证实了PL发射禁区内的缺陷能级的贡献。通过X射线衍射,Rietveld精制,热重分析和傅里叶变换红外光谱对结构特征进行表征。通过这些技术,详细讨论了由缺陷引起的结构有序无序,材料的晶格和表面以及PL上没有活化剂中心的化学反应之间的关系。

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