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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Efficient and stable Sr3Eu2B4O12 red phosphor benefiting from low symmetry and distorted local environment
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Efficient and stable Sr3Eu2B4O12 red phosphor benefiting from low symmetry and distorted local environment

机译:高效稳定的SR3EU2B4O12红色磷光体受益于低对称性和扭曲的本地环境

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The development of suitable red phosphors to obtain improved white color stands a good chance to serve in the new generation of white light-emitting diodes. Owing to multi-elements via doping and oxidation of reduced valence state of lanthanide or transition metal ions, most of the reported phosphors usually suffer from complex synthetic processes and unstable color of the lighting industry cycle. In this work, we present a new red emitting and stable Sr3Eu2B4O12 phosphor with regard to its special structure. It crystallizes as an orthorhombic cell, with Sr and Eu atoms co-occupying three different lattice sites in the space group of Pnma (no. 62). It is proposed that the long bond distance between activators minimizes the content quenching, while the high disorder of location restricts the thermal quenching. This phosphor emits bright red light with good color purity under UV excitation, with the luminescence intensity and quantum yield tunable via the fabrication temperature. Through a preliminary optimization of the synthesis process, the Sr3Eu2B4O12 phosphor prepared at 1250 degrees C has high quantum yields of about 94.7% and excellent thermal stability of 85.6% intensity retention at 150 degrees C relative to the initial value at room temperature. The calculated Judd-Ofelt intensity parameters (Omega(2), Omega(4)) further clarified that the Eu3+ site in Sr3Eu2B4O12 had lower symmetry without an inversion center, and more distorted local environment and structural rigidity of the host, predicting excellent thermal stability. Finally, a warm pc-WLED device has been produced by mixing as-prepared Sr3Eu2B4O12 powders and commercial BaMgAl10O17:Eu2+ and (Sr, Ba)(2)SiO4:Eu2+ phosphors, which exhibits a high color rendering index (R-a = 83.4) along with a color temperature at around 4102 K. The present work indicates that the Sr3Eu2B4O12 phosphor is an efficient red component with excellent thermal stability for white-light production of near-UV-excited w-LEDs.
机译:合适的红磷光体的开发获得改善的白色良好的机会在新一代的白色发光二极管中服务。由于多元素通过掺杂和氧化镧或过渡金属离子的降低的价态,所以报告的大多数磷光体通常遭受复杂的合成过程和照明工业循环的不稳定颜色。在这项工作中,我们在其特殊结构方面提出了一种新的红色发射和稳定的SR3EU2B4O12磷光体。它作为正交细胞结晶,SR和EU原子共占用PNMA的空间组中的三种不同的晶格位点(不。62)。提出活化剂之间的长粘结距离最小化内容淬火,而位置的高病症限制了热淬火。该磷光体在紫外线激发下发出具有良好颜色纯度的亮红光,发光强度和量子产率通过制造温度可调。通过合成过程的初步优化,Sr3Eu2B4O12荧光体来制备,在1250℃下具有约94.7%的高量子产率和中C相对于初始值150度在室温下85.6%的强度保留的优异的热稳定性。计算出的judd-elt强度参数(Omega(2),Omega(4))进一步阐明了SR3EU2B4O12中的EU3 +位点在没有反转中心的情况下具有较低的对称性,并且更加扭曲的局部环境和主体的结构刚性,预测优异的热稳定性。最后,通过混合的Sr3eU2b4O12粉末和商业Bamgal1017:Eu2 +和(Sr,Ba)(2)SiO 4:Eu2 +磷光体,其制备了温暖的PC-WLED装置,其展示了高色渲染指数(RA = 83.4)在4102K左右的色温下。本作本作者表明SR3EU2B4O12磷光体是一种有效的红色部件,具有优异的热稳定性,用于近UV激发的W-LED的白光产生。

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