Two-dimensional (2D) semiconductors offer great potential in nanoelectronics due to their unique electrical and optical properties mainly attributed to their atomically thin nature. To make use of 2D semiconductors for practical applications, it is highly desired to develop scalable methods for integration of complementary circuits rather than a discrete device. We report a simple, scalable method for fabricating complementary inverters based on n-type monolayer MoS2, grown by a chemical vapor deposition (CVD), and inkjet-printed p-type SWCNTs. The CVD and inkjet printing methods are effectively combined to show the feasibility in terms of the integration of low-dimensional materials for complementary circuits. In the complementary circuits...
Complementary electronics has represented the corner stone of the digital era, and silicon technolog...
Paper is the ideal substrate for the development of flexible and environmentally sustainable ubiquit...
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 ...
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 ...
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 ...
Funder: Imperial College London; Id: http://dx.doi.org/10.13039/501100000761Abstract: Air‐stable sem...
Air-stable semiconducting inks suitable for complementary logic are key to create low-power printed ...
2D nanoelectronics based on single-layer MoS[subscript 2] offers great advantages for both conventio...
Complementary electronics has represented the corner stone of the digital era, and silicon technolog...
Complementary electronics has represented the corner stone of the digital era, and silicon technolog...
Paper is the ideal substrate for the development of flexible and environmentally sustainable ubiquit...
Complementary electronics has represented the corner stone of the digital era, and silicon technolog...
Paper is the ideal substrate for the development of flexible and environmentally sustainable ubiquit...
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 ...
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 ...
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 ...
Funder: Imperial College London; Id: http://dx.doi.org/10.13039/501100000761Abstract: Air‐stable sem...
Air-stable semiconducting inks suitable for complementary logic are key to create low-power printed ...
2D nanoelectronics based on single-layer MoS[subscript 2] offers great advantages for both conventio...
Complementary electronics has represented the corner stone of the digital era, and silicon technolog...
Complementary electronics has represented the corner stone of the digital era, and silicon technolog...
Paper is the ideal substrate for the development of flexible and environmentally sustainable ubiquit...
Complementary electronics has represented the corner stone of the digital era, and silicon technolog...
Paper is the ideal substrate for the development of flexible and environmentally sustainable ubiquit...
Paper is the ideal substrate for the development of flexible and environmentally sustainable ubiquit...