首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Construction of core@shell nanostructured NiFe2O4@TiO2 ferrite NAND logic gate using fluorescence quenching mechanism for TiO2
【24h】

Construction of core@shell nanostructured NiFe2O4@TiO2 ferrite NAND logic gate using fluorescence quenching mechanism for TiO2

机译:用荧光猝灭机制构建核心@壳纳米结构NiFe2O4 @ TiO2铁氧体NAND逻辑栅极

获取原文
获取原文并翻译 | 示例
           

摘要

This study reports on the construction of nano nickel ferrite NAND logic gate utilizing the concept of fluorescence quenching mechanism due to its possible applications for the TiO2 sensor. Sol-gel auto combustion route and two-step synthesis procedures were adopted for synthesis and characterization of NiO, NiTiO3, NiFe2O4, and novel magnetic core-shell NiFe2O4@TiO2. The high crystalline phase formation, surface morphology and identical particle size formation (23-32 nm) were confirmed from XRD, SEM and W-H plot respectively. The TEM micrographs of core-shell NiFe2O4@TiO2 revels the inhomogeneous cages of TiO2 and unsymmetrical boundary around the magnetic NiFe2O4 core. The optical band gap (determined from UV-DRS spectra using Kubelka-Munk equation) decreases significantly from NiO(3.94 eV) to NiFe2O4@TiO2(1.84 eV) indicates enhanced semiconducting nature. The FTIR-ATR spectra spotlighted on the relaxation of the intrinsic metallic [Ni-(octa/tetra)-O] stretching vibrations from NiO to NiFe2O4@TiO2 core-shell. The quenching intensity of photoluminescence (PL) spectra in core@shell nanostructured materials inspires us to design an analogical nano ferrite NAND logic gate. The threshold value of logic gate response was established on 0.5 for the desired output signal. Finally, the potential applications of the ferrite NAND logic gate have utilized for TiO2 sensing. The saturation magnetization was lessened in magnetic core-shell NiFe2O4@TiO2 (7.13 emu/gm.) due to TiO2 shell. (C) 2018 Published by Elsevier B.V.
机译:本研究报告了利用荧光猝灭机构概念的纳米镍铁氧体NAND逻辑栅极的构建报告,由于其对TiO2传感器的应用。采用溶胶 - 凝胶自动燃烧途径和两步合成程序,用于NiO,NitiO3,NiFe2O4和新型磁芯 - 壳NiFe2O4 @ TiO2的合成和表征。高结晶相形成,表面形态和相同的粒度形成(23-32nm)分别从XRD,SEM和W-H曲线中确认。核心壳NiFe2O4 @ TiO2的TEM显微照片旋转TiO2的不均匀笼和磁性NiFe2O4核心周围的非对称边界。从NiO(3.94eV)到NiF2O4 @ TiO2(1.84eV)表示增强的半导体性质,从Nio(3.94eV)显着降低了光学带隙(从UV-DRS谱法)显着降低。在弛豫的基于NiO至NiFe2O4 @ TiO2核心壳的内在金属[Ni-(Octa / Tetra)-O]伸展振动的FTIR-ATR光谱。核心/纳米结构材料中的光致发光(PL)光谱的淬火强度激发了我们设计了一种类似纳米铁氧体NAND逻辑门。对于所需输出信号,在0.5上建立逻辑门响应的阈值。最后,铁氧体NAND逻辑门的潜在应用用于TiO2感测。由于TiO2壳,在磁芯 - 壳体NiFe2O4(7.13 emu / gm.)中,饱和磁化强度减小。 (c)2018由elestvier b.v出版。

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