Solution-processable ordered defect compound semiconductors for high-performance electronics.

Wang, Hsien-Nung; An, Fufei; Wong, Cindy Y; Yin, Kaijun; Liu, Jiangnan; Wang, Yihan; Zuo, Jian-Min; Schleife, André et al. · Sci Adv · 2024

basic_science · Level V

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Abstract

Solution-processable semiconductors hold promise in enabling applications requiring cost-effective electronics at scale but suffer from low performance limited by defects. We show that ordered defect compound semiconductor CuIn<sub>5</sub>Se<sub>8</sub>, which forms regular defect complexes with defect-pair compensation, can simultaneously achieve high performance and solution processability. CuIn<sub>5</sub>Se<sub>8</sub> transistors exhibit defect-tolerant, band-like transport supplying an output current above 35 microamperes per micrometer, with a large on/off ratio greater than 10<sup>6</sup>, a small subthreshold swing of 189 ± 21 millivolts per decade, and a high field-effect mobility of 58 ± 10 square centimeters per volt per second, with excellent uniformity and stability, superior to devices built on its less defective parent compound CuInSe<sub>2</sub>, analogous binary compound In<sub>2</sub>Se<sub>3</sub>, and other solution-deposited semiconductors. They can be monolithically integrated with carbon nanotube transistors to form high-speed and low-voltage three-dimensional complementary logic circuits and with micro-light-emitting diodes to realize high-resolution displays.