Retrieving electrical impedance maps at the nanoscale rapidly via nondestructive inspection with a high signal-to noise ratio is an unmet need, likely to impact various applications from biomedicine to energy conversion. In this study, we develop a multimodal functional imaging instrument that is characterized by the dual capability of impedance mapping and phase quantitation, high spatial resolution, and low temporal noise. To achieve this, we advance a quantitative phase imaging system, referred to as epi-magnified image spatial spectrum microscopy combined with electrical actuation, to provide complementary maps of the optical path and electrical impedance. We demonstrate our system with high-resolution maps of optical path differences a...
Quantitative impedance mapping of the spatially inhomogeneous insulator-to-metal transition (IMT) in...
A new method for measuring local interfacial impedance properties with high lateral resolution was d...
In this thesis we show impedance imaging may be used to measure neuronal activity at various stages ...
Impedance spectroscopy has long been recognized as one of the major techniques for the characterizat...
We describe highly localized electrochemical measurements and imaging using a simple, mobile theta p...
A robust impedance microscopy technique is presented. This optical tool enables high resolution imag...
Polymeric thin-film assemblies whose bulk electrical conductivity and mechanical performance have be...
We present a design for a linear array of eight electric potential sensors arranged with 1 mm spacin...
Novel optoelectronic devices rely on complex nanomaterial systems where the nanoscale morphology and...
Scanning Photo-Induced Impedance Microscopy (SPIM) is an impedance imaging technique that is based o...
We present two new approaches that significantly enhance the analytic power of Scanning Conductance ...
The need for structural health monitoring has become critical due to aging infrastructures, legacy a...
Copyright © 2013 Hyeuknam Kwon et al. This is an open access article distributed under the Creative ...
Electromechanics combines processes from electrical and mechanical systems and focuses on their inte...
Strong coupling between mechanical, electrical and magnetic properties in oxide materials, heterostr...
Quantitative impedance mapping of the spatially inhomogeneous insulator-to-metal transition (IMT) in...
A new method for measuring local interfacial impedance properties with high lateral resolution was d...
In this thesis we show impedance imaging may be used to measure neuronal activity at various stages ...
Impedance spectroscopy has long been recognized as one of the major techniques for the characterizat...
We describe highly localized electrochemical measurements and imaging using a simple, mobile theta p...
A robust impedance microscopy technique is presented. This optical tool enables high resolution imag...
Polymeric thin-film assemblies whose bulk electrical conductivity and mechanical performance have be...
We present a design for a linear array of eight electric potential sensors arranged with 1 mm spacin...
Novel optoelectronic devices rely on complex nanomaterial systems where the nanoscale morphology and...
Scanning Photo-Induced Impedance Microscopy (SPIM) is an impedance imaging technique that is based o...
We present two new approaches that significantly enhance the analytic power of Scanning Conductance ...
The need for structural health monitoring has become critical due to aging infrastructures, legacy a...
Copyright © 2013 Hyeuknam Kwon et al. This is an open access article distributed under the Creative ...
Electromechanics combines processes from electrical and mechanical systems and focuses on their inte...
Strong coupling between mechanical, electrical and magnetic properties in oxide materials, heterostr...
Quantitative impedance mapping of the spatially inhomogeneous insulator-to-metal transition (IMT) in...
A new method for measuring local interfacial impedance properties with high lateral resolution was d...
In this thesis we show impedance imaging may be used to measure neuronal activity at various stages ...