We review the status of protein-based molecular electronics. First, we define and discuss fundamental concepts of electron transfer and transport in and across proteins and …
A challenge in molecular electronics is to control the strength of the molecule–electrode coupling to optimize device performance. Here we show that non-covalent contacts between …
A central vision in molecular electronics is the creation of devices with functional molecular components that may provide unique properties. Proteins are attractive candidates for this …
Biology leverages a range of electrical phenomena to extract and store energy, control molecular reactions and enable multicellular communication. Microbes, in particular, have …
J Bai, X Li, Z Zhu, Y Zheng, W Hong - Advanced Materials, 2021 - Wiley Online Library
Single‐molecule electrochemical transistors are a type of novel molecular devices in which the tunneling current through the single‐molecule junction is modulated by the …
NS Malvankar, MT Tuominen, DR Lovley - Energy & Environmental …, 2012 - pubs.rsc.org
Two competing models for long-range electron transport through the conductive biofilms and nanowires of Geobacter sulfurreducens exist. In one model electrons are transported via pili …
H Wang, F Meng, B Zhu, WR Leow, Y Liu… - Advanced …, 2015 - Wiley Online Library
Resistive switching memory constitutes a prospective candidate for next‐generation data storage devices. Meanwhile, naturally occurring biomaterials are promising building blocks …
The field of organic electronics continues to be driven by new charge-transporting materials that are typically processed from toxic organic solvents incompatible with biological …
Bioelectronics moves toward designing nanoscale electronic platforms that allow in vivo determinations. Such devices require interfacing complex biomolecular moieties as the …