Review —Recent Advances in Yttrium Titanate Pyrochlores: Crystal Structure and Impact of Doping Elements

Supriyal Subramani
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Abstract

The invention of yttrium titanates (Y2Ti2O7) with various exciting properties in electroceramics has created great attention among industrialists and researchers. Improving the materials of pyrochlore oxides with significant properties for future electronic devices became essential. The Y2Ti2O7 is one such cubic pyrochlore at room temperature, having excellent dielectric and luminescence properties. This article comprehensively reviews the basics and state-of-the-art in developing Y2Ti2O7 ceramics. This material is widely used for electronic devices: transducers, capacitors, optoelectronic components, and light modulators. This review focuses on the fabrication methods and crystal structure mechanisms for optimizing functional properties and current challenges. Moreover, the effect of doping elements of Y2Ti2O7-based ceramics is briefly discussed. Also, future perspectives are provided to spotlight new and trending research directions in this materials research.
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回顾--钛酸钇热裂解物的最新研究进展:晶体结构和掺杂元素的影响
钛酸钇(Y2Ti2O7)在电化学中具有各种令人兴奋的特性,它的发明引起了工业家和研究人员的极大关注。为未来的电子设备改进具有重要特性的火成氧化物材料变得至关重要。Y2Ti2O7 就是这样一种在室温下具有优异介电和发光特性的立方热绿石。本文全面回顾了开发 Y2Ti2O7 陶瓷的基础知识和最新进展。这种材料广泛用于电子设备:传感器、电容器、光电元件和光调制器。本综述侧重于优化功能特性的制造方法和晶体结构机制以及当前面临的挑战。此外,还简要讨论了掺杂元素对 Y2Ti2O7 基陶瓷的影响。此外,还提供了该材料研究的未来展望,以突出新的和趋势性的研究方向。
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