Interface‐Centric Strategies in Kesterite Solar Cells: Addressing Challenges, solutions, and Future Directions for Efficient Solar‐Harvesting Technologies

Author:

Jagadish Kusuma1,Rahane Ganesh K.1,Kumar Boddeda Sai1,Borkar Durgesh R.1,Chordiya Kalyani23,Kavanagh Seán R4,Roy Anurag5,Debnath Tushar6,Kolekar Sadhu7,Kahaly Mousumi Upadhyay2,Mali Sawanta S.8,Pal Shovon9,Gasparini Nicola10,Dubal Deepak P.11,Rondiya Sachin R.1ORCID

Affiliation:

1. Department of Materials Engineering Indian Institute of Science Bangalore 560012 India

2. ELI‐ALPS ELI‐Hu Non‐Profit Ltd. Szeged H‐6720 Hungary

3. Department of Physics and Astronomy Louisiana State University Baton Rouge LA 70803 USA

4. Department of Materials Imperial College London and Department of Chemistry University College London London UK

5. Solar Energy Research Group Environment and Sustainability Institute University of Exeter Penryn Campus Penryn Cornwall TR10 9FE UK

6. Center for Nanotechnology Indian Institute of Technology Guwahati Guwahati 781039 India

7. Catalysis and Inorganic Chemistry Division CSIR‐ National Chemical Laboratory Dr. Homi Bhabha Road Pune 411 008 India

8. Polymer Energy Materials Laboratory School of Chemical Engineering Chonnam National University Gwangju 61186 South Korea

9. School of Physical Sciences National Institute of Science Education and Research HBNI Jatni India

10. Department of Chemistry and Centre of Processable Electronics Imperial College London White City Campus London W12 0BZ UK

11. Centre for Materials Science School of Chemistry and Physics Queensland University of Technology (QUT) 2 George Street Brisbane Queensland 4000 Australia

Abstract

AbstractAs reserves of non‐renewable energy sources decline, the search for sustainable alternatives becomes increasingly critical. Next‐generation energy materials play a key role in this quest by enabling the manipulation of properties for effective energy solutions and understanding interfaces to enhance energy yield. Studying these interfaces is essential for managing charge transport in optoelectronic devices, yet it presents significant challenges. This review emphasizes the critical role of interfaces in kesterite solar cells (KSCs), focusing on interfacial architecture, carrier losses, and non‐radiative recombination. This review highlights the importance of addressing interface issues and utilizing advanced characterization tools to reveal interface properties. Current interface problems are addressed, recent advancements in interface engineering are summarized, and perspectives on future challenges and prospects are offered. The goal is to illuminate the nature of interfaces and tackle interface losses, which are crucial for improving device design and performance. Despite their pivotal role in device operation, comprehensive reviews on interfaces are lacking, underscoring the relevance of the work for researchers in material interfaces and device engineering. It is hoped that this article will spark interest and inspire further research into interface studies and the mitigation of interface losses.

Funder

Science and Engineering Research Board

Engineering and Physical Sciences Research Council

Publisher

Wiley

Reference175 articles.

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