Semiconducting Polymers
A collection page of Ossila
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Semiconducting polymers with π-conjugated backbones can transport charge and interact strongly with light, making them key materials for a wide variety of optoelectronic devices. Their unique electronic and optical properties enable applications ranging from energy harvesting to light emission and sensing. Our range of semiconducting polymers has been carefully selected to support research in bulk heterojunctions, OPVs, OLEDs, OFETs, perovskite interfaces, and advanced solar cell technologies. We provide reliable and high-quality materials for both fundamental studies and device development. Use the filter option to see the Ossila Luminosyn™ range of high-purity, batch-specific polymer semiconductor materials. These materials have undergone extensive purification measures and are available in large batches with batch-specific GPC data. Jump to: Browse By Collection | Browse All Semiconducting Polymers | Gallery | Resources and Support Browse Semiconducting Polymer Collections OPV Polymers OPV Polymers Cutting-edge organic photovoltaic (OPV) polymer materials. OFET and OLED Polymers OFET and OLED Polymers Solution-processable and stable semiconducting polymers. Luminosyn Polymers Luminosyn Polymers High-purity, batch-specific polymer semiconductor materials. Interface Polymers Interface Polymers To improve adhesion, compatibility, or other interfacial interactions. Browse All Semiconducting Polymers Related categories: OFET & OLED polymers , OPV polymers , interface polymers , fullerene acceptors , small molecule OPV donors [[filterby tags="opv polymers, ofet and oled polymers, interface polymers, luminosyn polymers"]] [[split]] Semiconducting Polymer Gallery Previous Next Resources and Support What are Organic Semiconductors? Organic semiconductors are materials, ranging from small molecules to polymers, that can transport charge. Unlike in conductors, where electrons move freely across the material, organic semiconductors rely on a structure primarily composed
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