Paper is the ideal substrate for the development of flexible and environmentally sustainable ubiquitous electronic systems, which, combined with two-dimensional materials, could be exploited in many Internet-of-Things applications, ranging from wearable electronics to smart packaging. Here we report high-performance MoS2 field-effect transistors on paper fabricated with a “channel array” approach, combining the advantages of two large-area techniques: chemical vapor deposition and inkjet-printing. The first allows the pre-deposition of a pattern of MoS2; the second, the printing of dielectric layers, contacts, and connections to complete transistors and circuits fabrication. Average ION/IOFF of 8 × 103 (up to 5 × 104) and mobility of 5.5 cm...
Two-dimensional (2D) materials are recognized as a promising beyond-CMOS technology thanks to their ...
Two-dimensional (2D) semiconductors offer great potential in nanoelectronics due to their unique ele...
A highly reliable fabrication process of low voltage organic field-effect transistors on plastic sub...
Paper is the ideal substrate for the development of flexible and environmentally sustainable ubiquit...
Air-stable semiconducting inks suitable for complementary logic are key to create low-power printed ...
Air-stable semiconducting inks suitable for complementary logic are key to create low-power printed ...
Complementary electronics has represented the corner stone of the digital era, and silicon technolog...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Air-stable semiconducting inks suitable for complementary logic are key to create low-power printed ...
Paper is drawing considerable attention as a possible alternative to plastic for the development of ...
Fully printed wearable electronics based on two-dimensional (2D) material heterojunction structures ...
Inkjet printing is a cost-effective and scalable way to assemble colloidal materials into desired pa...
Abstract Transition metal dichalcogenide-based thin-film transistors (TFTs) have drawn intense resea...
Two-dimensional (2D) materials are recognized as a promising beyond-CMOS technology thanks to their ...
Two-dimensional (2D) semiconductors offer great potential in nanoelectronics due to their unique ele...
A highly reliable fabrication process of low voltage organic field-effect transistors on plastic sub...
Paper is the ideal substrate for the development of flexible and environmentally sustainable ubiquit...
Air-stable semiconducting inks suitable for complementary logic are key to create low-power printed ...
Air-stable semiconducting inks suitable for complementary logic are key to create low-power printed ...
Complementary electronics has represented the corner stone of the digital era, and silicon technolog...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Air-stable semiconducting inks suitable for complementary logic are key to create low-power printed ...
Paper is drawing considerable attention as a possible alternative to plastic for the development of ...
Fully printed wearable electronics based on two-dimensional (2D) material heterojunction structures ...
Inkjet printing is a cost-effective and scalable way to assemble colloidal materials into desired pa...
Abstract Transition metal dichalcogenide-based thin-film transistors (TFTs) have drawn intense resea...
Two-dimensional (2D) materials are recognized as a promising beyond-CMOS technology thanks to their ...
Two-dimensional (2D) semiconductors offer great potential in nanoelectronics due to their unique ele...
A highly reliable fabrication process of low voltage organic field-effect transistors on plastic sub...