Recent progress in photonic synapses for neuromorphic systems
J Zhang, S Dai, Y Zhao, J Zhang… - Advanced Intelligent …, 2020 - Wiley Online Library
Implementing synaptic functions with electronic devices is critical to achieve neuromorphic
systems on the hardware platform, as synapses play important roles in brain computing and …
systems on the hardware platform, as synapses play important roles in brain computing and …
Silver nanoparticles based ink with moderate sintering in flexible and printed electronics
L Mo, Z Guo, L Yang, Q Zhang, Y Fang, Z Xin… - International journal of …, 2019 - mdpi.com
Printed electronics on flexible substrates has attracted tremendous research interest
research thanks its low cost, large area production capability and environmentally friendly …
research thanks its low cost, large area production capability and environmentally friendly …
Printable and recyclable carbon electronics using crystalline nanocellulose dielectrics
NX Williams, G Bullard, N Brooke, MJ Therien… - Nature …, 2021 - nature.com
Electronic waste can lead to the accumulation of environmentally and biologically toxic
materials and is a growing global concern. Developments in transient electronics—in which …
materials and is a growing global concern. Developments in transient electronics—in which …
Flexible, print-in-place 1D–2D thin-film transistors using aerosol jet printing
Semiconducting carbon nanotubes (CNTs) printed into thin films offer high electrical
performance, significant mechanical stability, and compatibility with low-temperature …
performance, significant mechanical stability, and compatibility with low-temperature …
Emerging Internet of Things driven carbon nanotubes-based devices
Carbon nanotubes (CNTs) have attracted great attentions in the field of electronics, sensors,
healthcare, and energy conversion. Such emerging applications have driven the carbon …
healthcare, and energy conversion. Such emerging applications have driven the carbon …
Optoelectronic properties of printed photogating carbon nanotube thin film transistors and their application for light-stimulated neuromorphic devices
Artificial synapses/neurons based on electronic/ionic hybrid devices have attracted wide
attention for brain-inspired neuromorphic systems since it is possible to overcome the von …
attention for brain-inspired neuromorphic systems since it is possible to overcome the von …
Silver nanowire inks for direct-write electronic tattoo applications
NX Williams, S Noyce, JA Cardenas, M Catenacci… - Nanoscale, 2019 - pubs.rsc.org
Room-temperature printing of conductive traces has the potential to facilitate the direct
writing of electronic tattoos and other medical devices onto biological tissue, such as human …
writing of electronic tattoos and other medical devices onto biological tissue, such as human …
Sintering mechanism of size-controllable Cu-Ag core–shell nanoparticles for flexible conductive film with high conductivity, antioxidation, and electrochemical …
W Zhang, Y Zhou, Y Ding, L Song, Q Yuan… - Applied Surface …, 2022 - Elsevier
Metallic conductive nanoink with the sensitivity of temperature, oxygen, and electrochemical
migration is a great challenge for printed electronics. Here, the size-controllable Cu@ Ag …
migration is a great challenge for printed electronics. Here, the size-controllable Cu@ Ag …
Carbon nanotube electronics for IoT sensors
Abstract The Internet of Things (IoT) is the concept of a ubiquitous computing ecosystem in
which electronics of custom form factors are seamlessly embedded into everyday objects. At …
which electronics of custom form factors are seamlessly embedded into everyday objects. At …
Printed carbon nanotube thin-film transistors: progress on printable materials and the path to applications
S Lu, AD Franklin - Nanoscale, 2020 - pubs.rsc.org
Printing technologies have attracted significant attention owing to their potential use in the
low-cost manufacturing of custom or large-area flexible electronics. Among the many …
low-cost manufacturing of custom or large-area flexible electronics. Among the many …