论文标题
缺氧的热刺激发光纳米管
Thermally stimulated luminescence of oxygen-deficient zirconia nanotubes
论文作者
论文摘要
Zro $ _2 $纳米管阵列具有内在缺陷是开发用于检测,存储和转换能量的设备的有前途的固态基础。通过阳极氧化合成了5 $ $ m长度和直径30 nm的自氧氧化纳米管的层层,直径为30 nm,含有氧空位及其复合物。已经研究了室温的频谱分辨的TSL(热刺激的发光),用于室温以4.1 eV的紫外线辐射暴露的样品。已经发现了两个与T和2.8 eV接近最大值的发射带,分别与T和F+中心的辐射松弛有关。对一般阶动力学框架内测得的发光曲线的分析确定了由电荷载体陷阱引起的四个TSL峰的存在,其激活能为0.7-0.8 eV。提出了带图来解释基于电子(三面和四面氧位置的空位)和孔(间质氧离子)在辐照过程中观察到的TSL过程中的孔(间质氧离子)的作用,并在辐照过程中的TSL过程中的作用,以及随后加热无缺的Zro $ _2 $ _2 $ _2 $ _2 $ _2 $ nanotubes。
ZrO$_2$ nanotubular arrays with intrinsic defects are a promising solid-state basis for the development of devices for detecting, storing, and converting energy. Layers of the self-ordered zirconia nanotubes of 5 $μ$m length and 30 nm diameter, containing oxygen vacancies and their complexes, have been synthesized by anodic oxidation. The spectrally resolved TSL (thermally stimulated luminescence) above room temperature for the samples exposed by UV-irradiation with an energy of 4.1 eV have been studied. Two emission bands with maxima near 2.5 and 2.8 eV, associated with radiative relaxation of T and F+ centers, respectively, have been found. An analysis of the measured glow curves within the framework of general order kinetics established the presence of four TSL peaks caused by charge carriers traps with activation energies of 0.7 - 0.8 eV. A band diagram is proposed to explain the role of optically active centers based on electron (vacancies in positions of three- and four-coordinated oxygen) and hole (interstitial oxygen ions) traps in observed TSL processes during the irradiation and the followed heating of anion-deficient ZrO$_2$ nanotubes.