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The electrical enhancement and reversible manipulation of near-infrared luminescence in Nd doped ferroelectric nanocomposites for optical switches

机译:ND掺杂铁电纳米复合材料中近红外发光的电气增强和可逆操纵,用于光开关

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摘要

Lanthanide ion doped ferroelectric oxides have unique ferroelectric and luminescence properties, which show great promise for future optoelectronic applications. Moreover, it is of great interest that the luminescence of ferroelectric materials can be effectively modulated by an external electric field. In this work, Nd3+ doped ferroelectric nanocomposites with near-infrared emission have been developed to study their optoelectronic properties and reversible tuning. At room temperature, the near-infrared emission has been enhanced over 4.6 times and the intensity can be controllably modulated by tuning the electric field. The mechanism behind the enhancement and reversible modulation has been investigated for designing luminescence memory or optoelectronic sensors. This work suggests a way for not only studying the luminescence properties of optical materials via polarization engineering, but also for potentially developing multifunctional materials for optoelectronic applications.
机译:镧系元素掺杂铁电氧化物具有独特的铁电和发光性质,对未来的光电应用具有很大的承诺。 此外,它非常关注,可以通过外部电场有效地调制铁电材料的发光。 在这项工作中,已经开发出具有近红外发射的ND3 +掺杂铁电纳米复合材料,以研究它们的光电性能和可逆调谐。 在室温下,近红外发射已得到增强4.6倍,并且可以通过调谐电场来控制强度。 已经研究了增强和可逆调制背后的机制,用于设计发光存储器或光电传感器。 这项工作表明,不仅通过偏振工程研究光学材料的发光性能,而且还用于潜在地开发用于光电应用的多功能材料。

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