WO2023062539 - POLYMER AND PEROVSKITE COMPOSITE-BASED PHOTORECEPTOR AND METHOD

National phase entry:
Publication Number WO/2023/062539
Publication Date 20.04.2023
International Application No. PCT/IB2022/059748
International Filing Date 11.10.2022
Title **
[English] POLYMER AND PEROVSKITE COMPOSITE-BASED PHOTORECEPTOR AND METHOD
[French] PHOTORÉCEPTEUR À BASE DE COMPOSITE DE POLYMÈRE ET DE PÉROVSKITE ET PROCÉDÉ
Applicants **
KING ABDULLAH UNIVERSITY OF SCIENCE AND TECHNOLOGY 4700 King Abdullah University of Science and Technology Thuwal 23955-6900, SA
Inventors
ELTAWIL, Ahmed M. 4700 King Abdullah University of Science and Technology Thuwal 23955-6900, SA
FOUDA, Mohammed E. 7 San Marino Irvine, California 92614, US
OOI, Boon S. 4700 King Abdullah University of Science and Technology Thuwal 23955-6900, SA
SALAMA, Khaled Nabil 4700 King Abdullah University of Science and Technology Thuwal 23955-6900, SA
VIJJAPU, Mani Teja 4700 King Abdullah University of Science and Technology Thuwal 23955-6900, SA
Priority Data
63/255,556   14.10.2021   US
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Quotation for National Phase entry

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USA Filing, Examination2710
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Abstract[English] A capacitive photoresistor array (200) having frequency-independent capacitance includes first and second electrodes (210, 212) and a composite material (220) including a perovskite (222) and a terpolymer (224). The composite material (220) is sandwiched between the first electrode (210) and the second electrode (212), and a capacitance of the array (200) changes proportionally with a light intensity for visible light and is independent of light frequency due to a combination of the perovskite (222) and the terpolymer (224).[French] L'invention concerne un réseau capacitif de photorésistances (200) ayant une capacité indépendante de la fréquence comprenant des première et deuxième électrodes (210, 212) et un matériau composite (220) comprenant une pérovskite (222) et un terpolymère (224). Le matériau composite (220) est pris en sandwich entre la première électrode (210) et la deuxième électrode (212), et une capacité du réseau (200) change proportionnellement avec une intensité lumineuse pour la lumière visible et est indépendante de la fréquence lumineuse due à une combinaison de la pérovskite (222) et du terpolymère (224).
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