4.6 Review

Recent progress in flexible electrodes and textile shaped devices for organic solar cells

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Summary: Transparent electrodes are crucial in various modern devices, and the search for alternative materials to replace conventional indium tin oxide (ITO) has led to the interest in metallic nanomaterials. This review provides a comparison between metallic nanomaterials and other transparent conductive materials, discusses the development and fabrication technologies of metal-based TCMs, examines the challenges they face in integration, and summarizes their successful and potential applications.
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Summary: By inserting transition metal carbides and carbonitrides called MXene between silver nanowires and graphene, this study improved the conductivity, adhesion, roughness, and stability of the electrode. The composite TCE exhibited low sheet resistance and high optical transmittance, with stable electrical performances under different environmental conditions.

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Summary: The rapid development of smart and wearable electronics has led to a demand for flexible, lightweight, and affordable optoelectronics. This overview discusses the recent development of metal-based transparent electrodes for flexible organic and perovskite photovoltaics, highlighting both the challenges and opportunities in the field.

SOLAR RRL (2022)

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Light Managements and Transparent Electrodes for Semitransparent Organic and Perovskite Solar Cells

Linge Xiao et al.

Summary: Compared to inorganic solar cells, organic solar cells and perovskite solar cells have gained attention due to their unique properties such as tunable colors, low cost, solution processing, and flexibility. Recent research has focused on enhancing the photoelectric performance of these solar cells through light modulation and transparent electrode optimization strategies.

SOLAR RRL (2022)

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Single-Junction Organic Solar Cells with 19.17% Efficiency Enabled by Introducing One Asymmetric Guest Acceptor

Rui Sun et al.

Summary: The ternary strategy is an effective approach to achieve high-efficiency OSCs, but the nonradiative voltage loss limits further efficiency improvements. By incorporating an asymmetric guest acceptor BTP-2F2Cl, the OSCs show improved photoluminescence quantum yield, exciton diffusion length, and absorption spectrum, leading to enhanced power conversion efficiency.

ADVANCED MATERIALS (2022)

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Recent Progress of Electrode Materials for Flexible Perovskite Solar Cells

Yumeng Xu et al.

Summary: This review comprehensively discusses the recent progress of flexible electrodes used in flexible perovskite solar cells (FPSCs). The major features of flexible transparent electrodes and flexible opaque electrodes are compared and assessed, and the corresponding modification strategies and device performance are summarized. The development directions and difficulties of flexible electrodes are also discussed.

NANO-MICRO LETTERS (2022)

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Xiaoling Ma et al.

Summary: By incorporating DPE and DIO, the orientation of PNTB6-Cl and BTP-4F-12 can be improved, leading to enhanced performance of LbL type OPV devices and increased power conversion efficiency.

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Achieving 15.81% and 15.29% efficiency of all-polymer solar cells based on layer-by-layer and bulk heterojunction structures

Wenjing Xu et al.

Summary: In this study, wide bandgap polymer donor PM6 and narrow bandgap polymer acceptor PY-IT were used to fabricate all-polymer solar cells. The addition of the solvent additive 1-chloronaphthalene (CN) greatly enhanced the performance of the cells, leading to improved power conversion efficiency.

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Volatilizable Solid Additive-Assisted Treatment Enables Organic Solar Cells with Efficiency over 18.8% and Fill Factor Exceeding 80%

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APPLIED PHYSICS LETTERS (2006)

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JAPANESE JOURNAL OF APPLIED PHYSICS PART 1-REGULAR PAPERS SHORT NOTES & REVIEW PAPERS (2003)

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