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Structural and optoelectronic properties of hybrid halide perovskites for solar cells

机译:太阳能电池杂交卤化物钙酸盐的结构和光电性能

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摘要

Trihalide perovskites are an emerging class of materials, which have shown excellent performance so far in solution-processed optoelectronic devices such as perovskite solar cells (PSCs) and light emitting diodes (LEDs). The energy band gap (E_(gap)) of this class of materials is tunable and can be varied from 1.5 eV to 2.3 eV by changing its chemical composition, exhibiting a promising character to design versatile optoelectronic devices. It is thus, imperative to understand the relation between structural and optoelectronic properties of the perovskite-based materials offering intrinsic complexity. Hence, different interactions, defects as well as structural disorder have a defining role in the material properties. The intrinsic properties have been shown to have a significant impact on the performance of these perovskite materials. These properties include high dielectric constants, ambipolar transport features of long range, low exciton binding energies, and ferroelectric polarizations. In the current review, we briefly explore the crystal structure of the perovskite materials at atomistic-level and draw a comparison of the basic optical and electrical properties originating from particular atomic compositions together with their arrangements therein, and moreover, their applications in future optoelectronic devices are elaborated upon.
机译:Trihalide Perovskites是一种新兴的材料类,其在诸如Perovskite太阳能电池(PSC)和发光二极管(LED)之类的解决方案处理的光电器件中显示出优异的性能。这种材料的能带隙(E_(GAP))可调,可以通过改变其化学成分,从1.5eV变化到2.3eV,表现出具有设计多功能光电器件的有希望的特征。因此,必须了解提供基于钙钛矿的结构和光电性质之间的关系,其提供了内在复杂性的基于钙钛矿的材料。因此,不同的相互作用,缺陷以及结构障碍在材料特性中具有定义作用。已显示内在特性对这些钙钛矿材料的性能产生显着影响。这些性能包括高介电常数,长距离,低激子结合能和铁电偏振的amipolar传输特征。在目前的审查中,我们简要探讨了原子水平的钙钛矿材料的晶体结构,并将源自特定原子组合物的基本光学和电学的比较以及它们在其中的布置以及它们在未来光电器件中的应用被阐述。

著录项

  • 来源
    《Organic Electronics》 |2021年第4期|106077.1-106077.18|共18页
  • 作者单位

    School of Applied Sciences and Humanities National University of Technology 44000 Islamabad Pakistan;

    School of Applied Sciences and Humanities National University of Technology 44000 Islamabad Pakistan;

    State Key Laboratory for Modification of Chemical Fibres and Polymer Materials Shanghai 'Belt & Road'Joint Laboratory of Advanced Fibers and Low-dimension Materials College of Materials Science and Engineering Donghua University Shanghai 201620 PR China;

    Materials Research Laboratory Department of Physics University of Peshawar Peshawar 25120 Pakistan;

    Nanostructured Renewable Energy Materials Laboratory Faculty of Industrial Sciences & Technology 26300 Kuantan Pahang Malaysia;

    School of Applied Sciences and Humanities National University of Technology 44000 Islamabad Pakistan;

    School of Applied Sciences and Humanities National University of Technology 44000 Islamabad Pakistan;

    Department of Computer Engineering National University of Technology 44000 Islamabad Pakistan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Solar cells; Electronic properties; Optoelectronic; Perovskites;

    机译:太阳能电池;电子特性;光电子;佩洛夫斯基斯;

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