Various aspects of redox protein integration with nano-electronic elements are addressed by a multi-technique investigation of different yeast cytochrome c (YCC)-based hybrid systems. Three different immobilization strategies on gold via organic linkers are explored, involving either covalent bonding or electrostatic interaction. Specifically, Au surfaces are chemically modified by self-assembled monolayers (SAMs) exposing thiol-reactive groups, or by acid-oxidized single-wall carbon nanotubes (SWNTs). Atomic force microscopy and scanning tunnelling microscopy are employed to characterize the morphology and the electronic properties of single YCC molecules adsorbed on the modified gold surfaces. In each hybrid system, the protein molecules ...
The integration of redox proteins with nanomaterials has attracted much interest in the past years, ...
The integration of redox proteins with nanomaterials has attracted much interest in the past years, ...
The Aim of this work was to study the charge transfer of redoxactive proteinswith new techniques. Es...
Various aspects of redox protein integration with nano-electronic elements are addressed by a multi-...
Various aspects of redox protein integration with nano-electronic elements are addressed by a multi-...
Various aspects of redox protein integration with nano-electronic elements are addressed by a multi-...
Various aspects of redox protein integration with nano-electronic elements are addressed by a multi-...
Various aspects of redox protein integration with nano-electronic elements are addressed by a multi-...
Various aspects of redox protein integration with nano-electronic elements are addressed by a multi-...
The redox metalloprotein yeast cytochrome c was directly self-chemisorbed on "bare" gold electrodes ...
The redox metalloprotein yeast cytochrome c was directly self-chemisorbed on "bare" gold electrodes ...
One innovative thought in biomolecular electronics is the exploitation of electron transfer proteins...
The redox metalloprotein yeast cytochrome c was directly self-chemisorbed on "bare" gold electrodes ...
The redox metalloprotein yeast cytochrome c was directly self-chemisorbed on "bare" gold electrodes ...
Restricted Access.Direct electron transfer of redox proteins on electrode surfaces using surface imm...
The integration of redox proteins with nanomaterials has attracted much interest in the past years, ...
The integration of redox proteins with nanomaterials has attracted much interest in the past years, ...
The Aim of this work was to study the charge transfer of redoxactive proteinswith new techniques. Es...
Various aspects of redox protein integration with nano-electronic elements are addressed by a multi-...
Various aspects of redox protein integration with nano-electronic elements are addressed by a multi-...
Various aspects of redox protein integration with nano-electronic elements are addressed by a multi-...
Various aspects of redox protein integration with nano-electronic elements are addressed by a multi-...
Various aspects of redox protein integration with nano-electronic elements are addressed by a multi-...
Various aspects of redox protein integration with nano-electronic elements are addressed by a multi-...
The redox metalloprotein yeast cytochrome c was directly self-chemisorbed on "bare" gold electrodes ...
The redox metalloprotein yeast cytochrome c was directly self-chemisorbed on "bare" gold electrodes ...
One innovative thought in biomolecular electronics is the exploitation of electron transfer proteins...
The redox metalloprotein yeast cytochrome c was directly self-chemisorbed on "bare" gold electrodes ...
The redox metalloprotein yeast cytochrome c was directly self-chemisorbed on "bare" gold electrodes ...
Restricted Access.Direct electron transfer of redox proteins on electrode surfaces using surface imm...
The integration of redox proteins with nanomaterials has attracted much interest in the past years, ...
The integration of redox proteins with nanomaterials has attracted much interest in the past years, ...
The Aim of this work was to study the charge transfer of redoxactive proteinswith new techniques. Es...