Abstract
Organic diodes manufactured on a plastic substrate capable of rectifying a high-frequency radio-frequency identification signal (13.56 MHz), with sufficient power to operate an interactive smart tag, are reported. A high-performance conjugated semiconductor (an indacenodithiophene-benzothiadiazole copolymer) is combined with a carefully optimized architecture to satisfy the electrical requirements for an organic-semiconductor-based logic chip.
A high-performance conjugated polymer is shown to create fast organic rectifiers, which can be used in a near-field energy-harvesting circuit. The performance of this circuit is sufficient to power an interactive smart tag from a 13.56 MHz near-field communication source.
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