Embedding TiO2 microspheres into the active layer as light scatterers in a perovskite photodetector to boost light harvesting

Author:

Feng JianwenORCID,Cui Xiangqian,Li Bobo,Qiu Mingxia,Liu Weifeng,Liu Xuguang

Abstract

Abstract Here, TiO2 microspheres with particle sizes of 200–400 nm are embedded in p–i–n perovskite photodetectors, which are used as light scatterers. This approach was implemented to change the light transfer path in the perovskite layer, which gives the device higher photon-capture ability in a specific incident wavelength range. Compared with a pristine device, the photocurrent and responsivity of the device based on such a structure are obviously enhanced in the ranges of 560–610 nm and 730–790 nm. The photocurrent under 590 nm incident light wavelength illumination (light intensity P = 31.42 μW·cm−2) increases from 1.45 μA to 1.71 μA, with an increase of 17.93%, and the responsivity reaches 0.305 A·W−1. In addition, the introduction of TiO2 has no additional negative impact on the carrier extraction and the dark current. Also, the response time of the device did not deteriorate. Finally, the role of TiO2 as light scatterers is further verified by embedding microspheres into mixed-halide perovskite devices.

Funder

Shenzhen Technology Research Project

Education Department of Guangdong Province

the Ministry of Education Industry–University Cooperation and Collaborative Education Project

Guangdong Basic and Applied Basic Research Foundation

Shenzhen Technology University School–Enterprise Cooperation Project

Key R&D Program of Shanxi Province

Central Leading Science and Technology Development Foundation of Shanxi Province

Key Program of Yinchuan Science and Technology Bureau

Publisher

IOP Publishing

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Mechanics of Materials,General Materials Science,General Chemistry,Bioengineering

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