This work was supported in part through the BK21 Program funded by Ministry of Education of Korea.Herein, the underlying mechanisms for the growth of conductive filaments (CFs) at a metal–polymer electrolyte interface through ion migration in organic electrochemical metallization (ECM) memristor are presented. It is observed that the free volume of voids (nanopores) in the polymer electrolyte serves as the pathways of metal‐cations whereas the interfacial topography between an active electrode and a polymer electrolyte determines the nucleation sites of the CFs. The growth kinetics of the CFs and the resultant resistive memory are found to vary with the molecular weight of the polymer electrolyte and the metal protrusions at the interface. ...
Memory devices with higher performance and higher density are being required to deal with drasticall...
The combination of memory and signal handling characteristics of a memristor makes it a promising ca...
Full list of author information is available at the end of the articleNowadays, one of the most impo...
Herein, the underlying mechanisms for the growth of conductive filaments (CFs) at a metal–polymer el...
Being promising elements for neuromorphic computation, memristive devices have been often described ...
Memristors are among the most promising elements for modern microelectronics, having unique properti...
Solid-state programmable metallization cells have attracted considerable attention as memristive ele...
We report on the development of hybrid organic-inorganic material-based flexible memristor devices m...
Memristive materials play a key role in the development of neuromorphic technology given that they c...
open access articleIn this research, we investigate the memory behavior of poly(3,4 ethylenedioxythi...
Memristors are ideal devices able to switch among different resistive states and to retain the most ...
thesisScaling limitation of current memory technology requires invention of a new class of memory th...
The electronics market is highly competitive and driven by consumers desire for the latest and most ...
Memristors are an electronic device whose resistance depends on the voltage history that has been ap...
The composition of conventional circuits is based on four basic elements: resistors, capacitors, ind...
Memory devices with higher performance and higher density are being required to deal with drasticall...
The combination of memory and signal handling characteristics of a memristor makes it a promising ca...
Full list of author information is available at the end of the articleNowadays, one of the most impo...
Herein, the underlying mechanisms for the growth of conductive filaments (CFs) at a metal–polymer el...
Being promising elements for neuromorphic computation, memristive devices have been often described ...
Memristors are among the most promising elements for modern microelectronics, having unique properti...
Solid-state programmable metallization cells have attracted considerable attention as memristive ele...
We report on the development of hybrid organic-inorganic material-based flexible memristor devices m...
Memristive materials play a key role in the development of neuromorphic technology given that they c...
open access articleIn this research, we investigate the memory behavior of poly(3,4 ethylenedioxythi...
Memristors are ideal devices able to switch among different resistive states and to retain the most ...
thesisScaling limitation of current memory technology requires invention of a new class of memory th...
The electronics market is highly competitive and driven by consumers desire for the latest and most ...
Memristors are an electronic device whose resistance depends on the voltage history that has been ap...
The composition of conventional circuits is based on four basic elements: resistors, capacitors, ind...
Memory devices with higher performance and higher density are being required to deal with drasticall...
The combination of memory and signal handling characteristics of a memristor makes it a promising ca...
Full list of author information is available at the end of the articleNowadays, one of the most impo...