Recent advance in free-standing nanowire transistor bioprobes opens up new opportunities of accurately interfacing spatially unobstructed nanoscale sensors with live cells. However, the existing fabrication procedures face efficiency and yield limitations when working with more complex nanoscale building blocks to integrate, for example, multiplexed recordings or additional functionalities. To date, only single-kinked silicon nanowires have been successfully used in such probes. Here we establish a general fabrication strategy to mitigate such limitations with which synthetically designed complex nanoscale building blocks can be readily used without causing significant penalty in yield or fabrication time, and the geometry of the probe can ...
Nanostructures, which have sizes comparable to biological functional units involved in cellular comm...
Recording bioelectric signals at high spatio-temporal resolution with low invasiveness is ...
International audienceThe continuous miniaturization of electronic components and the emergence of n...
Semiconductor nanowires configured as the active channels of field-effect transistors (FETs) have be...
Recording intracellular bioelectrical signals is central to understanding the fundamental behaviour ...
Semiconductor nanowire materials and devices provide unique opportunities in the frontier between na...
New tools for intracellular electrophysiology that push the limits of spatiotemporal resolution whil...
<p>The ability to make electrical measurements inside cells has led to many important advances in el...
Abstract: The interface between nanoscale electronic devices and biological systems enables interact...
Nanowire FETs (NWFETs) are promising building blocks for nanoscale bioelectronic interfaces with cel...
Nanoelectronic devices offer substantial potential for interrogating biological systems, although ne...
Nanostructures, which have sizes comparable to biological functional units involved in cellular comm...
The ability to make electrical measurements inside cells has led to many important advances in elect...
Nanowire-based field-effect transistors, including devices with planar and three-dimensional configu...
Functional kinked nanowires (KNWs) represent a new class of nanowire building blocks, in which funct...
Nanostructures, which have sizes comparable to biological functional units involved in cellular comm...
Recording bioelectric signals at high spatio-temporal resolution with low invasiveness is ...
International audienceThe continuous miniaturization of electronic components and the emergence of n...
Semiconductor nanowires configured as the active channels of field-effect transistors (FETs) have be...
Recording intracellular bioelectrical signals is central to understanding the fundamental behaviour ...
Semiconductor nanowire materials and devices provide unique opportunities in the frontier between na...
New tools for intracellular electrophysiology that push the limits of spatiotemporal resolution whil...
<p>The ability to make electrical measurements inside cells has led to many important advances in el...
Abstract: The interface between nanoscale electronic devices and biological systems enables interact...
Nanowire FETs (NWFETs) are promising building blocks for nanoscale bioelectronic interfaces with cel...
Nanoelectronic devices offer substantial potential for interrogating biological systems, although ne...
Nanostructures, which have sizes comparable to biological functional units involved in cellular comm...
The ability to make electrical measurements inside cells has led to many important advances in elect...
Nanowire-based field-effect transistors, including devices with planar and three-dimensional configu...
Functional kinked nanowires (KNWs) represent a new class of nanowire building blocks, in which funct...
Nanostructures, which have sizes comparable to biological functional units involved in cellular comm...
Recording bioelectric signals at high spatio-temporal resolution with low invasiveness is ...
International audienceThe continuous miniaturization of electronic components and the emergence of n...