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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >K8Nb7P7O39: a new type of complicated incommensurately modulated structure and photoluminescence properties of Eu3+-doped solid solutions
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K8Nb7P7O39: a new type of complicated incommensurately modulated structure and photoluminescence properties of Eu3+-doped solid solutions

机译:K8Nb7P7O39:掺杂Eu3 +的固溶体的一种新型的复杂的,不相称的调制结构和光致发光性质

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摘要

A new type of potassium niobium phosphate, K8Nb7P7O39, has been prepared and its structure has been determined by single crystal X-ray diffraction analysis. The results show that it crystallizes in a novel (3 + 1)-dimensional incommensurately modulated structure with a triclinic superspace group P (1) over bar(alpha beta gamma)O and modulation vector q = -0.35281a* + 0.17630b* + 0.25807c*. The structure of K8Nb7P7O39 contains [K-3.66](infinity) N, [K-4.34](infinity) N and [Nb7P7O39](infinity) N layers alternately stacked along the c-axis. In this structure, seven not fully occupied K atoms (six of them come from the [K-3.66](infinity) N layer and the remaining one comes from the [K-4.34]infinity N layer) are thought to be the dominant factors in driving the structural modulation. The strong occupational modulation in combination with positional modulation of these seven K atoms can be described by crenel-type modulation functions. Furthermore, elemental composition, UV-Vis absorption spectrum, SEM morphology and photoluminescence properties induced by Eu3+-doping have been studied for K8Nb7P7O39. The excitation spectrum covers a wide range from 362 to 465 nm and it matches well with the emission of near-UV InGaN-based LED chips and bluish-green LED chips, indicating that K8Nb7P7O39: Eu3+ has potential as a red-emitting phosphor for LED applications.
机译:制备了一种新型的磷酸钾铌K8Nb7P7O39,并通过单晶X射线衍射分析确定了其结构。结果表明,它在bar(alpha beta gamma)O上以三斜晶超空间群P(1)和调制矢量q = -0.35281a * + 0.17630b * +形成具有新颖(3 + 1)维不等比例调制结构的晶体。 0.25807c *。 K8Nb7P7O39的结构包含[c-3.66] [Infinity] N,[K-4.34] [Infinity] N和[Nb7P7O39] [Infinity] N层沿c轴交替堆叠。在此结构中,七个未完全占据的K原子(其中六个来自[K-3.66] [Infinity] N层,其余一个来自[K-4.34] Infinity N层)被认为是主要因素在驱动结构调制中。这七个K原子的强职业调制与位置调制相结合,可以通过crenel型调制函数来描述。此外,研究了K8Nb7P7O39的Eu3 +掺杂诱导的元素组成,UV-Vis吸收光谱,SEM形貌和光致发光性能。激发光谱覆盖362至465 nm的宽范围,并且与基于近紫外InGaN的LED芯片和蓝绿色LED芯片的发射非常匹配,表明K8Nb7P7O39:Eu3 +具有作为LED发射红色荧光粉的潜力应用程序。

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