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His work developing new solar cell materials led to the discovery that a ternary materials blend, with two non-fullerene acceptors, could outperform the equivalent binary devices, leading to high power conversion efficiencies, that helped towards a resurgence in the field. He continues to expand his application focus for polymer materials to perform at the interface between biology and electronics, demonstrating together with colleagues Jonathan Rivnay, George Malliaras and Sahika Inal, electron transport in an organic electrochemical transistor (OECT) operated in an aqueous electrolyte in ambient conditions. This discovery provided the impetus for a new class of polymer based electrochemical transistor sensors for biological applications and improve the sophistication of bioelectronic devices. Further work with colleague Inal has led to their employment in the detection of lactate and glucose with potential societal impact in healthcare.
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Latifah Almulla,Victor Druet, Christopher E Petoukhoff, Wentao Shan,Nisreen Alshehri,Sophie Griggs,Yazhou Wang,Maryam Alsufyani,Wan Yue,Iain McCulloch,Frédéric Laquai,Sahika Inal
Materials horizons (2024)
Giovanni Maria Matrone, Eveline R W van Doremaele,Abhijith Surendran, Zachary Laswick,Sophie Griggs,Gang Ye,Iain McCulloch,Francesca Santoro,Jonathan Rivnay,Yoeri van de Burgt
FARADAY DISCUSSIONSno. 0 (2024): 251-262
CHEMISTRY OF MATERIALSno. 4 (2024): 1841-1854
Ilke Uguz,David Ohayon, Sinan Yilmaz,Sophie Griggs,Rajendar Sheelamanthula, Jason D Fabbri,Iain McCulloch,Sahika Inal,Kenneth L Shepard
Science advancesno. 12 (2024): eadi9710-eadi9710
Advanced materials (Deerfield Beach, Fla.)pp.e2308823-e2308823, (2024)
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