» Articles » PMID: 35967516

Best Practices in the Measurement of Circularly Polarised Photodetectors

Overview
Date 2022 Aug 15
PMID 35967516
Authors
Affiliations
Soon will be listed here.
Abstract

Circularly polarised light will revolutionise emerging technologies, including encrypted light-based communications, quantum computing, bioimaging and multi-channel data processing. In order to make use of these remarkable opportunities, high performance photodetectors that can accurately differentiate between left- and right-handed circularly polarised light are desperately needed. Whilst this potential has resulted in considerable research interest in chiral materials and circularly polarised photodetecting devices, their translation into real-world technologies is limited by non-standardised reporting and testing protocols. This mini-review provides an accessible introduction into the working principles of circularly polarised photodetectors and a comprehensive overview of the performance metrics of state-of-the-art devices. We propose a rigorous device characterisation procedure that will allow for standardised evaluation of novel devices, which we hope will accelerate research and investment in this area.

Citing Articles

Discriminating circular polarization of light: Left or right?.

Lee W, Cho C Light Sci Appl. 2025; 14(1):26.

PMID: 39746905 PMC: 11696568. DOI: 10.1038/s41377-024-01694-w.


Graphene-Templated Achiral Hybrid Perovskite for Circularly Polarized Light Sensing.

Volochanskyi O, Haider G, Alharbi E, Kakavelakis G, Mergl M, Thakur M ACS Appl Mater Interfaces. 2024; 16(39):52789-52798.

PMID: 39297304 PMC: 11450682. DOI: 10.1021/acsami.4c10289.


Research Progress on Rashba Effect in Two-Dimensional Organic-Inorganic Hybrid Lead Halide Perovskites.

Guo J, Zhang J, Di Y, Gan Z Nanomaterials (Basel). 2024; 14(8).

PMID: 38668177 PMC: 11054462. DOI: 10.3390/nano14080683.


Highly Boosting Circularly Polarized Luminescence of Chiral Metal-Imidazolate Frameworks.

Wang X, Zhou C, Zheng J, Lian Z, Sun M, Huang Y Adv Sci (Weinh). 2023; 10(17):e2207333.

PMID: 37072611 PMC: 10265085. DOI: 10.1002/advs.202207333.


Self-assembly of chiral diketopyrrolopyrrole chromophores giving supramolecular chains in monolayers and twisted microtapes.

Humphreys J, Killalea C, Pop F, Davies E, Siligardi G, Amabilino D Chirality. 2023; 35(5):281-297.

PMID: 36760121 PMC: 10947275. DOI: 10.1002/chir.23539.

References
1.
Li C, Wang H, Wang F, Li T, Xu M, Wang H . Ultrafast and broadband photodetectors based on a perovskite/organic bulk heterojunction for large-dynamic-range imaging. Light Sci Appl. 2020; 9:31. PMC: 7054320. DOI: 10.1038/s41377-020-0264-5. View

2.
Greenfield J, Wade J, Brandt J, Shi X, Penfold T, Fuchter M . Pathways to increase the dissymmetry in the interaction of chiral light and chiral molecules. Chem Sci. 2021; 12(25):8589-8602. PMC: 8246297. DOI: 10.1039/d1sc02335g. View

3.
Huang Y, Deng H, Xu K, Wang Z, Wang Q, Wang F . Highly sensitive and fast phototransistor based on large size CVD-grown SnS2 nanosheets. Nanoscale. 2015; 7(33):14093-9. DOI: 10.1039/c5nr04174k. View

4.
Mazzio K, Luscombe C . The future of organic photovoltaics. Chem Soc Rev. 2014; 44(1):78-90. DOI: 10.1039/c4cs00227j. View

5.
Liu T, Shi W, Tang W, Liu Z, Schroeder B, Fenwick O . High Responsivity Circular Polarized Light Detectors based on Quasi Two-Dimensional Chiral Perovskite Films. ACS Nano. 2022; 16(2):2682-2689. PMC: 9007523. DOI: 10.1021/acsnano.1c09521. View