{"database":"biostudies-literature","file_versions":[],"scores":null,"additional":{"submitter":["Rahmanudin A"],"funding":["Consejo Nacional de Ciencia y Tecnología","Engineering and Physical Sciences Research Council"],"pagination":["2002010"],"full_dataset_link":["https://www.ebi.ac.uk/biostudies/studies/S-EPMC7610335"],"repository":["biostudies-literature"],"omics_type":["Unknown"],"volume":["7(21)"],"pubmed_abstract":["Organic semiconductors (OSCs) promise to deliver next-generation electronic and energy devices that are flexible, scalable and printable. Unfortunately, realizing this opportunity is hampered by increasing concerns about the use of volatile organic compounds (VOCs), particularly toxic halogenated solvents that are detrimental to the environment and human health. Here, a cradle-to-grave process is reported to achieve high performance p- and n-type OSC devices based on indacenodithiophene and diketopyrrolopyrrole semiconducting polymers that utilizes aqueous-processes, fewer steps, lower reaction temperatures, a significant reduction in VOCs (>99%) and avoids all halogenated solvents. The process involves an aqueous mini-emulsion polymerization that generates a surfactant-stabilized aqueous "],"journal":["Advanced science (Weinheim, Baden-Wurttemberg, Germany)"],"pubmed_title":["Organic Semiconductors Processed from Synthesis-to-Device in Water."],"pmcid":["PMC7610335"],"funding_grant_id":["EP/S019367/1","EP/R00661X/1","EP/P025021/1","EP/P025498/1"],"pubmed_authors":["Broll S","Foster AB","Marcial-Hernandez R","Walton AS","Rahmanudin A","Turner ML","Tate DJ","Zamhuri A","Khan RU","Aphichatpanichakul S"],"additional_accession":[]},"is_claimable":false,"name":"Organic Semiconductors Processed from Synthesis-to-Device in Water.","description":"Organic semiconductors (OSCs) promise to deliver next-generation electronic and energy devices that are flexible, scalable and printable. Unfortunately, realizing this opportunity is hampered by increasing concerns about the use of volatile organic compounds (VOCs), particularly toxic halogenated solvents that are detrimental to the environment and human health. Here, a cradle-to-grave process is reported to achieve high performance p- and n-type OSC devices based on indacenodithiophene and diketopyrrolopyrrole semiconducting polymers that utilizes aqueous-processes, fewer steps, lower reaction temperatures, a significant reduction in VOCs (>99%) and avoids all halogenated solvents. The process involves an aqueous mini-emulsion polymerization that generates a surfactant-stabilized aqueous ","dates":{"release":"2020-01-01T00:00:00Z","publication":"2020 Nov","modification":"2025-04-25T20:39:28.126Z","creation":"2020-11-19T11:33:27Z"},"accession":"S-EPMC7610335","cross_references":{"pubmed":["33173736"],"doi":["10.1002/advs.202002010"]}}