Interfacial modification engineering for efficient and stable MA-free wide-bandgap perovskite solar cells by grain regrowth DOI
Hao Huang,

Ziyu Li,

Zhijia Chen

et al.

Materials Chemistry Frontiers, Journal Year: 2024, Volume and Issue: 8(18), P. 3017 - 3027

Published: Jan. 1, 2024

Introducing GuSCN reduces the defect density of perovskites by one order magnitude. Consequently, an MA-free opaque wide-bandgap perovskite solar cell achieves 20.92% power conversion efficiency with excellent stability.

Language: Английский

Recent Advances of Inverted Perovskite Solar Cells DOI
Xinhui Luo, Xiao Liu, Xuesong Lin

et al.

ACS Energy Letters, Journal Year: 2024, Volume and Issue: 9(4), P. 1487 - 1506

Published: March 12, 2024

Inverted perovskite solar cells (PSCs) with p-i-n structure have recently attracted widespread attention owing to their fast-growing power conversion efficiency. In this Review, we focus on the progress in materials that contribute improved efficiency of inverted PSCs, including hole transport self-assembled monolayers as highlight, electron materials, and interface modification between charge layers for passivating defects. Then, discuss recent advances perovskites, optimization bandgap, interfacial band engineering, development film processing. Finally, point out challenges future perspectives further improving stability PSCs hope offering suggestions tackle hindrance commercial applications.

Language: Английский

Citations

50

All-perovskite tandem solar cells: from fundamentals to technological progress DOI Creative Commons
Jae-Keun Lim, Nam‐Gyu Park, Sang Il Seok

et al.

Energy & Environmental Science, Journal Year: 2024, Volume and Issue: 17(13), P. 4390 - 4425

Published: Jan. 1, 2024

This review provides fundamental knowledge and development directions towards the commercialising of advantageous all-perovskite tandem solar cells.

Language: Английский

Citations

34

Annual research review of perovskite solar cells in 2023 DOI Creative Commons

Qisen Zhou,

Xiaoxuan Liu, Zonghao Liu

et al.

Materials Futures, Journal Year: 2024, Volume and Issue: 3(2), P. 022102 - 022102

Published: April 24, 2024

Abstract Perovskite (PVK) solar cells (PSCs) have garnered considerable research interest owing to their cost-effectiveness and high efficiency. A systematic annual review of the on PSCs is essential for gaining a comprehensive understanding current trends. Herein, analysis papers reporting key findings in 2023 was conducted. Based results, were categorized into six classifications, including regular n–i–p PSCs, inverted p–i–n PVK-based tandem cells, PVK modules, device stability, lead toxicity green solvents. Subsequently, detailed overview summary advancements within each classification presented. Overall, this serves as valuable resource guiding future endeavors field PSCs.

Language: Английский

Citations

25

Overview of the Current State of Flexible Solar Panels and Photovoltaic Materials DOI Open Access
Rashid Dallaev, Tatiana Pisarenko, Nikola Papěž

et al.

Materials, Journal Year: 2023, Volume and Issue: 16(17), P. 5839 - 5839

Published: Aug. 25, 2023

The rapid growth and evolution of solar panel technology have been driven by continuous advancements in materials science. This review paper provides a comprehensive overview the diverse range employed modern panels, elucidating their roles, properties, contributions to overall performance. discussion encompasses both traditional crystalline silicon-based panels emerging thin-film technologies. A detailed examination photovoltaic materials, including monocrystalline polycrystalline silicon as well alternative such cadmium telluride (CdTe), copper indium gallium selenide (CIGS), perovskite cells, is presented. Furthermore, impact transparent conductive encapsulation polymers, antireflective coatings on efficiency durability explored. delves into synergistic interplay between material manufacturing processes, environmental considerations. Through survey utilized this insights current state field, highlighting avenues for future sustainable energy solutions.

Language: Английский

Citations

41

29.9%-efficient, commercially viable perovskite/CuInSe2 thin-film tandem solar cells DOI Creative Commons
Haoming Liang, Jiangang Feng, Carlos D. Rodríguez‐Gallegos

et al.

Joule, Journal Year: 2023, Volume and Issue: 7(12), P. 2859 - 2872

Published: Nov. 1, 2023

Language: Английский

Citations

34

Collaborative interfacial modification and surficial passivation for high-efficiency MA-free wide-bandgap perovskite solar cells DOI

Yali Ou,

Hao Huang,

Hongxi Shi

et al.

Chemical Engineering Journal, Journal Year: 2023, Volume and Issue: 469, P. 143860 - 143860

Published: June 5, 2023

Language: Английский

Citations

32

Enhanced Quasi‐Fermi Level Splitting of Perovskite Solar Cells by Universal Dual‐Functional Polymer DOI
Dachang Liu, Chen Chen,

Xianzhao Wang

et al.

Advanced Materials, Journal Year: 2023, Volume and Issue: 36(13)

Published: Dec. 19, 2023

Perovskite solar cells (PSCs) have attracted extensive attention due to their higher power conversion efficiency (PCE) and simple fabrication process. However, the open-circuit voltage (V

Language: Английский

Citations

25

Room Temperature Crystallized Phase‐Pure α‐FAPbI3 Perovskite with In‐Situ Grain‐Boundary Passivation DOI Creative Commons
Zejiao Shi, Yaxin Wang, Yanyan Wang

et al.

Advanced Science, Journal Year: 2024, Volume and Issue: 11(22)

Published: March 19, 2024

Abstract Energy loss in perovskite grain boundaries (GBs) is a primary limitation toward high‐efficiency solar cells (PSCs). Two critical strategies to address this issue are high‐quality crystallization and passivation of GBs. However, the established methods generally carried out discretely due complicated mechanisms growth defect formation. In study, combined method proposed by introducing 3,4,5‐Trifluoroaniline iodide (TFAI) into precursor. The TFAI triggers union nano‐sized colloids microclusters facilitates complete phase transition α‐FAPbI 3 at room temperature. controlled chemical reactivity strong steric hindrance effect enable fixed location suppress defects This combination well‐crystallized grains effectively passivated GBs leads an improvement open circuit voltage ( V oc ) PSCs from 1.08 1.17 V, which one highest recorded without interface modification. TFAI‐incorporated device achieved champion PCE 24.81%. maintained steady power output near its maximum point, showing almost no decay over 280 h testing pre‐processing.

Language: Английский

Citations

9

Enhanced Photodetection and Air Stability of Lead‐Free Tin Perovskite Photodiodes via Germanium Incorporation and Organic Cation‐Mediated Dimensionality Control DOI
Jeong‐Seok Nam, Woongsik Jang, Jiye Han

et al.

Advanced Functional Materials, Journal Year: 2024, Volume and Issue: 34(44)

Published: Aug. 16, 2024

Abstract This work presents the advancement of lead‐free tin perovskite photodiodes in terms their photodetection and air stability by incorporating germanium (Ge) ethylenediamine (EDA) to formamidinium iodide (FASnI 3 ). EDA 0.01 FA 0.98 SnI :Ge‐based demonstrate a significantly improved specific detectivity (1.6 × 10 12 Jones at −0.1 V), cut‐off frequency (6.6 5 Hz), response speed (0.53 µs), signal‐to‐noise ratio (45 dB) compared with control devices. The superior performance is attributed stronger Ge─I bond, passivation Sn 2+ I – vacancies smaller Ge ions, promotion fully 3D structure, elevation conduction band energy level, formation protective GeO layer. Various film analyses, including X‐ray photoelectron spectroscopy, UV density functional theory, as well device testing using time‐of‐flight secondary ion mass spectrometry voltage‐dependent admittance, support explain mechanisms behind enhancements. Ge‐ EDA‐incorporated exhibit excellent stability, evidenced time‐dependent ultraviolet visible spectra considerably high certified power conversion efficiency without encapsulation air, demonstrating potential for practical applications. obtained highest among published tin‐based photodetectors, presenting monumental progress from previous report same group.

Language: Английский

Citations

7

Status report on emerging photovoltaics DOI Open Access
Annick Anctil, Meghan N. Beattie,

Christopher Case

et al.

Journal of Photonics for Energy, Journal Year: 2023, Volume and Issue: 13(04)

Published: Dec. 14, 2023

This report provides a snapshot of emerging photovoltaic (PV) technologies. It consists concise contributions from experts in wide range fields including silicon, thin film, III-V, perovskite, organic, and dye-sensitized PVs. Strategies for exceeding the detailed balance limit light managing are presented, followed by section detailing key applications commercialization pathways. A on sustainability then discusses need minimization environmental footprint PV manufacturing recycling. The concludes with perspective based broad survey questions presented to contributing authors regarding needs future evolution PV.

Language: Английский

Citations

14