Miniaturized gas chromatography (GC) systems can provide fast, quantitative analysis of chemical vapors in an ultrasmall package. We describe a chemical sensor technology based on resonant nanoelectromechanical systems (NEMS) mass detectors that provides the speed, sensitivity, specificity, and size required by the microscale GC paradigm. Such NEMS sensors have demonstrated detection of subparts per billion (ppb) concentrations of a phosphonate analyte. By combining two channels of NEMS detection with an ultrafast GC front-end, chromatographic analysis of 13 chemicals was performed within a 5 s time window
This paper reports on a new class of nanoscaled piezoelectric aluminum nitride contour-mode resonant...
This paper reports a novel ultra-fast chemosensor array microsystem for the rapid detection of volat...
Cataloged from PDF version of article.Thesis (M.S.): Bilkent University, Mechanical Engineering, İhs...
Gas Chromatography (GC) is routinely used in the laboratory to temporally separate chemical mixtures...
We have developed arrays of nanomechanical systems (NEMS) by large-scale integration, comprising tho...
A small, consumable-free, low-power, ultra-high-speed comprehensive GC×GC system consisting of micro...
We describe the application of nanoelectromechanical systems (NEMS) to ultrasensitive mass detection...
A nanoenabled gravimetric chemical sensor prototype based on the large scale integration of single-s...
This body of research focuses on improving microsensor arrays used as detectors in Si-microfabricate...
Chemical vapor sensors are used in a wide variety of fields such as security, environmental monitori...
We have developed arrays of nanomechanical systems (NEMS) by large-scale integration, comprising tho...
Abstract — Miniaturized detector arrays are critical to reducing size and maintaining measurement qu...
A small, portable gas chromatograph (GC) was assembled for the trace detection of controlled substan...
A miniature gas chromatography (GC) system was designed and fabricated using silicon micromachining ...
Small dimensions and high resonance frequencies render Nanoelectromechanical systems (NEMS) sensitiv...
This paper reports on a new class of nanoscaled piezoelectric aluminum nitride contour-mode resonant...
This paper reports a novel ultra-fast chemosensor array microsystem for the rapid detection of volat...
Cataloged from PDF version of article.Thesis (M.S.): Bilkent University, Mechanical Engineering, İhs...
Gas Chromatography (GC) is routinely used in the laboratory to temporally separate chemical mixtures...
We have developed arrays of nanomechanical systems (NEMS) by large-scale integration, comprising tho...
A small, consumable-free, low-power, ultra-high-speed comprehensive GC×GC system consisting of micro...
We describe the application of nanoelectromechanical systems (NEMS) to ultrasensitive mass detection...
A nanoenabled gravimetric chemical sensor prototype based on the large scale integration of single-s...
This body of research focuses on improving microsensor arrays used as detectors in Si-microfabricate...
Chemical vapor sensors are used in a wide variety of fields such as security, environmental monitori...
We have developed arrays of nanomechanical systems (NEMS) by large-scale integration, comprising tho...
Abstract — Miniaturized detector arrays are critical to reducing size and maintaining measurement qu...
A small, portable gas chromatograph (GC) was assembled for the trace detection of controlled substan...
A miniature gas chromatography (GC) system was designed and fabricated using silicon micromachining ...
Small dimensions and high resonance frequencies render Nanoelectromechanical systems (NEMS) sensitiv...
This paper reports on a new class of nanoscaled piezoelectric aluminum nitride contour-mode resonant...
This paper reports a novel ultra-fast chemosensor array microsystem for the rapid detection of volat...
Cataloged from PDF version of article.Thesis (M.S.): Bilkent University, Mechanical Engineering, İhs...