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Carbon nanotube digital electronics
It is anticipated that the scaling of silicon complementary metal–oxide–semiconductor
(CMOS) devices will end around 2020, but alternative technologies capable of maintaining …
(CMOS) devices will end around 2020, but alternative technologies capable of maintaining …
Solution‐processing of high‐purity semiconducting single‐walled carbon nanotubes for electronics devices
High‐purity semiconducting single‐walled carbon nanotubes (s‐SWCNTs) are of paramount
significance for the construction of next‐generation electronics. Until now, a number of …
significance for the construction of next‐generation electronics. Until now, a number of …
Aligned, high-density semiconducting carbon nanotube arrays for high-performance electronics
Single-walled carbon nanotubes (CNTs) may enable the fabrication of integrated circuits
smaller than 10 nanometers, but this would require scalable production of dense and …
smaller than 10 nanometers, but this would require scalable production of dense and …
Two-dimensional semiconductor integrated circuits operating at gigahertz frequencies
Two-dimensional transition metal dichalcogenides could potentially be used to create
transistors that are scaled beyond the capabilities of silicon devices. However, despite …
transistors that are scaled beyond the capabilities of silicon devices. However, despite …
Monolithic three-dimensional integration of RRAM-based hybrid memory architecture for one-shot learning
In this work, we report the monolithic three-dimensional integration (M3D) of hybrid memory
architecture based on resistive random-access memory (RRAM), named M3D-LIME. The …
architecture based on resistive random-access memory (RRAM), named M3D-LIME. The …
DNA-directed nanofabrication of high-performance carbon nanotube field-effect transistors
Biofabricated semiconductor arrays exhibit smaller channel pitches than those created using
existing lithographic methods. However, the metal ions within biolattices and the …
existing lithographic methods. However, the metal ions within biolattices and the …
Low-voltage high-performance flexible digital and analog circuits based on ultrahigh-purity semiconducting carbon nanotubes
Carbon nanotube (CNT) thin-film transistor (TFT) is a promising candidate for flexible and
wearable electronics. However, it usually suffers from low semiconducting tube purity, low …
wearable electronics. However, it usually suffers from low semiconducting tube purity, low …
Wafer-scale transistor arrays fabricated using slot-die printing of molybdenum disulfide and sodium-embedded alumina
Two-dimensional materials made via solution processing could be used to create next-
generation electronic devices at scale. However, existing solution processing methods …
generation electronic devices at scale. However, existing solution processing methods …
Complementary transistors based on aligned semiconducting carbon nanotube arrays
High-density semiconducting aligned carbon nanotube (A-CNT) arrays have been
demonstrated with wafer-scale preparation of materials and have shown high performance …
demonstrated with wafer-scale preparation of materials and have shown high performance …
Flexible CMOS integrated circuits based on carbon nanotubes with sub-10 ns stage delays
High-performance logic circuits that are constructed on flexible or unconventional substrates
are required for emerging applications such as real-time analytics. Carbon nanotube thin …
are required for emerging applications such as real-time analytics. Carbon nanotube thin …