From Material Structure to Device Performance with Lead-Free Layered Perovskite Optoelectronics
en-GBde-DEes-ESfr-FR

From Material Structure to Device Performance with Lead-Free Layered Perovskite Optoelectronics

09/09/2026 HEP Journals

Perovskite materials have emerged as promising candidates for next-generation solar cells, light-emitting diodes, and photodetectors because of their remarkable optical and electronic properties. However, the widespread use of lead-containing perovskites has raised environmental and sustainability concerns. Lead-free halide double perovskites offer an attractive alternative, but their performance is strongly influenced by complex structural, electronic, and defect-related factors.

In this review, Soo-Yeon Yang and Hyojung Kim examine recent advances in 2D and quasi-2D LFHDPs, focusing on how structural design translates into material properties and ultimately device performance. The review goes beyond a conventional classification of perovskite compositions by establishing a structure-property-device performance framework.

Particular attention is given to layered architectures, including Ruddlesden–Popper, Dion–Jacobson, alternating-cation with (111)-oriented structures. The authors discuss how organic spacer cations, crystal orientation, dimensionality, composition, and interfaces influence bandgap, exciton behavior, charge transport, defects, and stability. Quantitative comparisons of optical and electronic properties and representative device performances are also provided to facilitate direct comparison among different LFHDP systems.

The review further highlights the growing potential of layered LFHDPs in photovoltaic, light-emitting, and photodetection applications. For LEDs, special emphasis is placed on exciton-related emission, self-trapped-exciton and dopant-mediated luminescence, photoluminescence quantum yield, and device architecture. Strategies including spacer engineering, compositional tuning, defect passivation, and interface engineering are discussed as routes toward improved device performance.

Despite rapid progress, several challenges remain, including wide or indirect bandgaps, strong exciton binding, limited carrier mobility, defect formation, operational stability, and scalable manufacturing. The review therefore identifies emerging opportunities in AI-assisted materials discovery, high-throughput computational screening, machine learning, green synthesis, multidimensional heterostructures, and industrial-scale processing.

By linking structure → properties → device performance → future engineering strategies, this review provides a practical roadmap for the development of sustainable, high-performance lead-free perovskite optoelectronics. The work entitled “Structure-property relationships in 2D/quasi-2D lead-free halide double perovskites for optoelectronic devices” was published in Frontiers of Optoelectronics (published on Sept. 1, 2026) .
Fichiers joints
  • Image: Roadmap toward high-performance and sustainable 2D/ quasi-2D lead-free perovskite optoelectronics.
09/09/2026 HEP Journals
Regions: Asia, China
Keywords: Applied science, Engineering

Disclaimer: AlphaGalileo is not responsible for the accuracy of content posted to AlphaGalileo by contributing institutions or for the use of any information through the AlphaGalileo system.

Témoignages

We have used AlphaGalileo since its foundation but frankly we need it more than ever now to ensure our research news is heard across Europe, Asia and North America. As one of the UK’s leading research universities we want to continue to work with other outstanding researchers in Europe. AlphaGalileo helps us to continue to bring our research story to them and the rest of the world.
Peter Dunn, Director of Press and Media Relations at the University of Warwick
AlphaGalileo has helped us more than double our reach at SciDev.Net. The service has enabled our journalists around the world to reach the mainstream media with articles about the impact of science on people in low- and middle-income countries, leading to big increases in the number of SciDev.Net articles that have been republished.
Ben Deighton, SciDevNet
AlphaGalileo is a great source of global research news. I use it regularly.
Robert Lee Hotz, LA Times

Nous travaillons en étroite collaboration avec...


  • The Research Council of Norway
  • SciDevNet
  • Swiss National Science Foundation
  • iesResearch
Copyright 2026 by DNN Corp Terms Of Use Privacy Statement