This paper presents improvements in flow detection by electrical cross-correlation spectroscopy. This new technique detects molecular number fluctuations of electrochemically active analyte molecules as they are transported by liquid flow through a nanochannel. The fluctuations are used as a marker of liquid flow as their time of flight in between two consecutive transducers is determined, thereby allowing for the measurement of liquid flow rates in the picoliter-per-minute regime. Here we show an enhanced record-low sensitivity below 1 pL/min by capitalizing on improved electrical instrumentation, an optimized sensor geometry and a smaller channel cross section. We further discuss the impact of sensor geometry on the cross-correlation func...
This research is a theoretical study aiming to improve the understanding of nanofluidic flows. Nanof...
We present a high-speed electrical detection scheme based on a custom-designed CMOS amplifier which ...
We introduce both theoretically and experimentally a new electrochemical technique based on measurin...
This paper presents improvements in flow detection by electrical cross-correlation spectroscopy. Thi...
We introduce all-electrical cross-correlation spectroscopy of molecular number fluctuations in nanof...
We have developed a lithography-based nanofluidic device for sensitive electrochemical detection app...
Despite mass flow is arguably the most elementary transport associated to nanofluidics, its measurem...
A nanofluidic device is described that is capable of electrically monitoring the driven translocatio...
The main focus of this thesis is to explore mass-transport processes for redox-active analytes in co...
We report the electrochemical detection of individual redox-active molecules as they freely diffuse ...
We suspended a single nanoskived gold nanowire in a microfluidic channel. In this preliminary report...
This thesis describes nanofluidic devices capable of detecting small numbers of redox-active molecul...
We show that a nanofluidic device consisting of a solution-filled cavity bounded by two closely spac...
Poster Division: Engineering, Math, and Physical Sciences: 1st Place (The Ohio State University Edwa...
The diffusive mass transport of individual redox molecules was probed experimentally in microfabrica...
This research is a theoretical study aiming to improve the understanding of nanofluidic flows. Nanof...
We present a high-speed electrical detection scheme based on a custom-designed CMOS amplifier which ...
We introduce both theoretically and experimentally a new electrochemical technique based on measurin...
This paper presents improvements in flow detection by electrical cross-correlation spectroscopy. Thi...
We introduce all-electrical cross-correlation spectroscopy of molecular number fluctuations in nanof...
We have developed a lithography-based nanofluidic device for sensitive electrochemical detection app...
Despite mass flow is arguably the most elementary transport associated to nanofluidics, its measurem...
A nanofluidic device is described that is capable of electrically monitoring the driven translocatio...
The main focus of this thesis is to explore mass-transport processes for redox-active analytes in co...
We report the electrochemical detection of individual redox-active molecules as they freely diffuse ...
We suspended a single nanoskived gold nanowire in a microfluidic channel. In this preliminary report...
This thesis describes nanofluidic devices capable of detecting small numbers of redox-active molecul...
We show that a nanofluidic device consisting of a solution-filled cavity bounded by two closely spac...
Poster Division: Engineering, Math, and Physical Sciences: 1st Place (The Ohio State University Edwa...
The diffusive mass transport of individual redox molecules was probed experimentally in microfabrica...
This research is a theoretical study aiming to improve the understanding of nanofluidic flows. Nanof...
We present a high-speed electrical detection scheme based on a custom-designed CMOS amplifier which ...
We introduce both theoretically and experimentally a new electrochemical technique based on measurin...