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Martyn A. McLachlan

University of London ·
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Area of research
Electrical and Electronic Engineering · Polymers and Plastics
Research interest
Research interests include Materials science, Perovskite (structure), Optoelectronics, Passivation, Photoluminescence, and Crystallinity.
h-index
citations
1,612
works
25
NIH funding
primary concept
email

Recent publications

Dark Current in Broadband Perovskite–Organic Heterojunction Photodetectors Controlled by Interfacial Energy Band Offset
Advanced Materials 2024cited by 33position: middledoi
Asymmetric charge carrier transfer and transport in planar lead halide perovskite solar cells
Cell Reports Physical Science 2022cited by 31position: middledoi
Overcoming Nanoscale Inhomogeneities in Thin-Film Perovskites via Exceptional Post-annealing Grain Growth for Enhanced Photodetection
Nano Letters 2022cited by 22position: middledoi
Inverted organic photovoltaics with a solution-processed Mg-doped ZnO electron transport layer annealed at 150 °C
Sustainable Energy & Fuels 2022cited by 7position: middledoi
Additive‐Free, Low‐Temperature Crystallization of Stable α‐FAPbI<sub>3</sub> Perovskite
Advanced Materials 2021cited by 161position: middledoi
Phosphorene Nanoribbon-Augmented Optoelectronics for Enhanced Hole Extraction
Journal of the American Chemical Society 2021cited by 77position: middledoi
Aerosol Assisted Solvent Treatment: A Universal Method for Performance and Stability Enhancements in Perovskite Solar Cells
Advanced Energy Materials 2021cited by 41position: lastdoi
Correlating the Active Layer Structure and Composition with the Device Performance and Lifetime of Amino-Acid-Modified Perovskite Solar Cells
ACS Applied Materials & Interfaces 2021cited by 26position: lastdoi
Asymmetric Charge Carrier Transfer and Transport in Planar Lead Halide Perovskite Solar Cells
Proceedings of the 13th Conference on Hybrid and Organic Photovoltaics 2021cited by 2position: middledoi
Light-intensity and thickness dependent efficiency of planar perovskite solar cells: charge recombination<i>versus</i>extraction
Journal of Materials Chemistry C 2020cited by 151position: middledoi
Towards Efficient Integrated Perovskite/Organic Bulk Heterojunction Solar Cells: Interfacial Energetic Requirement to Reduce Charge Carrier Recombination Losses
Advanced Functional Materials 2020cited by 63position: middledoi
Enhancing the operational stability of unencapsulated perovskite solar cells through Cu–Ag bilayer electrode incorporation
Journal of Materials Chemistry A 2020cited by 53position: lastdoi
Evidence for surface defect passivation as the origin of the remarkable photostability of unencapsulated perovskite solar cells employing aminovaleric acid as a processing additive
Journal of Materials Chemistry A 2019cited by 89position: middledoi
Suppression of Recombination Losses in Polymer:Nonfullerene Acceptor Organic Solar Cells due to Aggregation Dependence of Acceptor Electron Affinity
Advanced Energy Materials 2019cited by 72position: middledoi
Origin of Open‐Circuit Voltage Enhancements in Planar Perovskite Solar Cells Induced by Addition of Bulky Organic Cations
Advanced Functional Materials 2019cited by 68position: lastdoi
p-Doping of organic hole transport layers in p–i–n perovskite solar cells: correlating open-circuit voltage and photoluminescence quenching
Journal of Materials Chemistry A 2019cited by 67position: lastdoi
Origin of Performance Enhancement in TiO<sub>2</sub>‐Carbon Nanotube Composite Perovskite Solar Cells
Small Methods 2019cited by 61position: middledoi
Room Temperature Synthesis of Phosphine‐Capped Lead Bromide Perovskite Nanocrystals without Coordinating Solvents
Particle & Particle Systems Characterization 2019cited by 40position: middledoi
Elucidating the Origins of Subgap Tail States and Open‐Circuit Voltage in Methylammonium Lead Triiodide Perovskite Solar Cells
Advanced Functional Materials 2018cited by 113position: lastdoi
Outstanding Indoor Performance of Perovskite Photovoltaic Cells – Effect of Device Architectures and Interlayers
Solar RRL 2018cited by 91position: middledoi
Excitation Density Dependent Photoluminescence Quenching and Charge Transfer Efficiencies in Hybrid Perovskite/Organic Semiconductor Bilayers
Advanced Energy Materials 2018cited by 84position: middledoi
Passivation against oxygen and light induced degradation by the PCBM electron transport layer in planar perovskite solar cells
Sustainable Energy & Fuels 2018cited by 39position: middledoi
Probing and Controlling Intragrain Crystallinity for Improved Low Temperature–Processed Perovskite Solar Cells
Advanced Functional Materials 2018cited by 26position: lastdoi
Tuning Charge Carrier Dynamics and Surface Passivation in Organolead Halide Perovskites with Capping Ligands and Metal Oxide Interfaces
Advanced Optical Materials 2018cited by 22position: middledoi
High Electron Mobility Thin‐Film Transistors Based on Solution‐Processed Semiconducting Metal Oxide Heterojunctions and Quasi‐Superlattices
Advanced Science 2015cited by 173position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

James R. Durrant · Imperial College London23 papers (2018–2024)Chieh‐Ting Lin · Swansea University18 papers (2018–2022)Tian Du · Tianjin University17 papers (2018–2022) · 11 papers (2019–2022)Weidong Xu · North Carolina State University11 papers (2019–2022) · 10 papers (2018–2020) · 8 papers (2018–2021) · 6 papers (2021–2022)Hongkyu Kang · King Abdullah University of Science and Technology5 papers (2018–2021) · 5 papers (2018–2021)Saif A. Haque · University of Surrey5 papers (2019–2022)Kwanghee Lee · University of Florida4 papers (2019–2021)Joe Briscoe · Queen Mary University of London4 papers (2020–2022) · 4 papers (2021–2022) · 4 papers (2019–2020) · 3 papers (2019–2020)Xiaoe Li · Wenzhou Medical University3 papers (2018–2019) · 3 papers (2018–2019) · 3 papers (2019–2020) · 3 papers (2020–2022)
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