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氧化锌纳米棒和纳米管对有机及钙钛矿发光二极管电学和光学特性的影响。

Effect of ZnO nanorods and nanotubes on the electrical and optical characteristics of organic and perovskite light-emitting diodes.

作者信息

Mohammadnejad Shahram, Ahadzadeh Shabnam, Nouri Rezaie Mahdiyar

机构信息

Department of Electrical Engineering, Iran University of Science and Technology, Narmak, Tehran, Iran.

出版信息

Nanotechnology. 2021 Mar 26;32(24):245204. doi: 10.1088/1361-6528/abe893.

DOI:10.1088/1361-6528/abe893
PMID:33769964
Abstract

Due to their suitable electrical and optical properties, ZnO nanostructure-based organic light-emitting diodes (LEDs) and perovskite LEDs can be utilized in the optoelectronics industry. A combination of ZnO nanorods and nanotubes with various types of polymers or hybrid perovskites leads to better waveguides and transportation of carriers. Therefore, more efficient LEDs are offered to the industry. In this research, four devices, including ZnO nanorod (nanotube)/MEH-PPV (CHNHPbI) LEDs are simulated by SILVACO TCAD software. To provide deeper understanding of the impact of applying nanorods and nanotubes in hybrid heterostructures, an ab initio study has been conducted and the electronic structure, density of states, absorption coefficient and dielectric function of each of these nanostructures have been scrutinized. Subsequently, the obtained data have been utilized in the SILVACO simulation, and characteristics such as the current-voltage curve, light power-voltage curve, electroluminescence (EL) spectra and radiative recombination rate of four devices have been investigated. By employing a combination of a perovskite layer and ZnO nanotubes, the turn-on voltage of the simulated devices has been decreased from 13.7 V to 1.1 V. Moreover, a drastic increment in ultraviolet emission from devices based on ZnO nanotubes can be seen, which stems from occurrence of the whispering gallery mode and low defects of nanotubes compared to nanorods. A redshift caused by a reduction in the band gaps of the nanostructures can also be observed in the EL spectra.

摘要

由于其合适的电学和光学特性,基于氧化锌纳米结构的有机发光二极管(LED)和钙钛矿LED可用于光电子行业。氧化锌纳米棒和纳米管与各种类型的聚合物或混合钙钛矿相结合,可实现更好的波导和载流子传输。因此,能为该行业提供更高效的LED。在本研究中,通过SILVACO TCAD软件模拟了四种器件,包括氧化锌纳米棒(纳米管)/MEH-PPV(CHNHPbI)LED。为了更深入地了解在混合异质结构中应用纳米棒和纳米管的影响,进行了一项从头算研究,并对这些纳米结构各自的电子结构、态密度、吸收系数和介电函数进行了仔细研究。随后,将获得的数据用于SILVACO模拟,并研究了四种器件的电流-电压曲线、光功率-电压曲线、电致发光(EL)光谱和辐射复合率等特性。通过采用钙钛矿层和氧化锌纳米管的组合,模拟器件的开启电压从13.7 V降至1.1 V。此外,可以看到基于氧化锌纳米管的器件的紫外发射有显著增加,这源于回音壁模式的出现以及与纳米棒相比纳米管的缺陷较少。在EL光谱中还可以观察到由于纳米结构带隙减小而导致的红移。

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