...
首页> 外文期刊>Physical chemistry chemical physics: PCCP >Effects of rare-earth co-doping on the local structure of rare-earth phosphate glasses using high and low energy X-ray diffraction
【24h】

Effects of rare-earth co-doping on the local structure of rare-earth phosphate glasses using high and low energy X-ray diffraction

机译:高低能X射线衍射研究稀土共掺杂对稀土磷酸盐玻璃局部结构的影响

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Rare-earth co-doping in inorganic materials has a long-held tradition of facilitating highly desirable optoelectronic properties for their application to the laser industry. This study concentrates specifically on rare-earth phosphate glasses, (R2O3)_x(R'2O3)_y(P2O5)_(1-(x+y)),, where (R, R') denotes (Ce, Er) or (La, Nd) co-doping and the total rare-earth composition corresponds to a range between metaphosphate, RP3O9, and ultraphosphate, RP5O14. Thereupon, the effects of rare-earth co-doping on the local structure are assessed at the atomic level. Pair-distribution function analysis of high-energy X-ray diffraction data (Q_(max) = 28 A~(-1)) is employed to make this assessment. Results reveal a stark structural invariance to rare-earth co-doping which bears testament to the open-framework and rigid nature of these glasses. A range of desirable attributes of these glasses unfold from this finding; in particular, a structural simplicity that will enable facile molecular engineering of rare-earth phosphate glasses with 'dial-up' lasing properties. When considered together with other factors, this finding also demonstrates additional prospects for these co-doped rare-earth phosphate glasses in nuclear waste storage applications. This study also reveals, for the first time, the ability to distinguish between P-0 and P=0 bonding in these rare-earth phosphate glasses from X-ray diffraction data in a fully quantitative manner. Complementary analysis of high-energy X-ray diffraction data on single rare-earth phosphate glasses of similar rare-earth composition to the co-doped materials is also presented in this context. In a technical sense, all high-energy X-ray diffraction data on these glasses are compared with analogous low-energy diffraction data; their salient differences reveal distinct advantages of high-energy X-ray diffraction data for the study of amorphous materials.
机译:无机材料中的稀土共掺杂具有促进将高度理想的光电特性应用于激光行业的悠久传统。这项研究专门针对稀土磷酸盐玻璃(R2O3)_x(R'2O3)_y(P2O5)_(1-(x + y)),其中(R,R')表示(Ce,Er)或(La,Nd)共掺杂并且总稀土组成对应于偏磷酸盐RP3O9和超磷酸盐RP5O14之间的范围。因此,在原子水平上评估了稀土共掺杂对局部结构的影响。采用高能X射线衍射数据(Q_(max)= 28 A〜(-1))的成对分布函数分析进行评估。结果显示稀土共掺杂具有明显的结构不变性,这证明了这些玻璃的开放框架和刚性。这些发现展现了这些眼镜的一系列理想属性。特别是结构简单,将使具有“拨号”激光特性的稀土磷酸盐玻璃的分子工程变得容易。当与其他因素一起考虑时,该发现还证明了这些共掺杂稀土磷酸盐玻璃在核废料存储应用中的其他前景。这项研究还首次揭示了从稀土X射线衍射数据中以完全定量的方式区分这些稀土磷酸盐玻璃中P-0和P = 0键的能力。在这种情况下,还提供了对稀土成分与共掺杂材料相似的单个稀土磷酸盐玻璃的高能X射线衍射数据的补充分析。从技术上讲,将这些玻璃上的所有高能X射线衍射数据与类似的低能衍射数据进行比较;它们的显着差异揭示了高能X射线衍射数据在研究非晶态材料方面的独特优势。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号