A Review on the Applicability of Luminescent Phosphors and Effective Positioning in Dye‐Sensitized Solar Cells for Enhanced Performance and Stability

Author:

Muthu Senthilkumar12ORCID,Gandhi Mano Balaji3ORCID,Meenakshisundaram Sai Prasanna3ORCID,Gandhi Saravana Kumar4ORCID,Sridharan Moorthy Babu3ORCID,Park Hui Joon125ORCID

Affiliation:

1. Department of Organic and Nano Engineering Hanyang University Seoul 04763 Republic of Korea

2. Human-Tech Convergence Program Hanyang University Seoul 04763 Republic of Korea

3. Crystal Growth Centre Anna University Chennai Tamilnadu 600025 India

4. Department of Physics Rajalakshmi Engineering College (Autonomous) Thandalam Chennai Tamilnadu 602105 India

5. Hanyang Institute of Smart Semiconductor Hanyang University Seoul 04763 South Korea

Abstract

The narrow range of solar light absorption facilitated by the photoactive organic dyes has been restricting the significant development, and large‐scale applications of dye‐sensitized solar cells (DSSC). The major problem that limits the power conversion efficiency (PCE) of DSSC is the limitations of the organic dyes (light absorbers in DSSC) to absorb beyond the visible region of solar spectrum that resulting in lower PCE (≈13%) as compared with the commercialized technologies. Hence, the focus on developing efficient strategies to harvest the ultraviolet and infrared light regions of the solar spectrum and effective conversion into the absorption limit of dyes and thereby increasing the device performance and stability is the emerging technological development in DSSCs. Rare earth ion‐doped upconversion (UC) and downconversion (DC) phosphors are the most promising solutions for the prevalent issues of the liquid junction solar cells. This review will focus on the emerging strategies for the PCE enhancement of DSSC with UC and DC materials. An exclusive review on the facile approach of simultaneous usage of both the UC and DC phosphors and the effective positioning of these spectral conversion phosphors, to achieve highly stable DSSCs with superior PCE is provided.

Funder

National Research Foundation of Korea

Publisher

Wiley

Subject

Electrical and Electronic Engineering,Energy Engineering and Power Technology,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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