Vibrating micro- and nanomechanical mass sensors are capable of quantitatively determining attached mass from only the first three (two) measured cantilever (suspended) resonant frequencies. However, in aqueous solutions that are relevant to most biological systems, the mass determination is challenging because the quality factor (Q-factor) due to fluid damping decreases and, as a result, usually just the fundamental resonant frequencies can be correctly identified. Moreover, for higher modes the resonance coupling, noise, and internal damping have been proven to strongly affect the measured resonances and, correspondingly, the accuracy of estimated masses. In this work, a technique capable of determining the mass for the cantilever and als...
Resonant sensors and crystal oscillators for mass detection need to be excited at very high natural ...
Micro and nanomechanical resonators are powerful and label-free sensors of analytes in various envir...
Using suspended nanochannel resonators (SNRs) we demonstrate measurements of mass in solution with a...
Vibrating micro- and nanomechanical mass sensors are capable of quantitatively determining attached ...
We have developed a sensitive method for real-time mass sensing in a fluid using a microfabricated a...
We present a resonant mass sensor for specific biomolecular detection in a subnanoliter fluid volume...
We report simultaneous determination of the mass and position of micro-beads attached to a nanoscale...
The mass sensing superiority of a micro-/nano-mechanical resonator sensor over conventional mass spe...
The mass sensing superiority of a micro-/nano-mechanical resonator sensor over conventional mass spe...
In this work we study the different phenomena taking place when a hydrostatic pressure is applied in...
The mass sensing superiority of a micro-/nano-mechanical resonator sensor over conventional mass spe...
Assumption-free mass quantification of nanofilms, nanoparticles, and (supra)molecular adsorbates in ...
Nanomechanical resonators enable the measurement of mass with extraordinary sensitivity1, 2, 3, 4, 5...
Nanoelectromechanical cantilevers have achieved unprecedented sensitivity in the detection of displa...
Viscous damping severely limits the performance of resonator based sensing in liquids. We present en...
Resonant sensors and crystal oscillators for mass detection need to be excited at very high natural ...
Micro and nanomechanical resonators are powerful and label-free sensors of analytes in various envir...
Using suspended nanochannel resonators (SNRs) we demonstrate measurements of mass in solution with a...
Vibrating micro- and nanomechanical mass sensors are capable of quantitatively determining attached ...
We have developed a sensitive method for real-time mass sensing in a fluid using a microfabricated a...
We present a resonant mass sensor for specific biomolecular detection in a subnanoliter fluid volume...
We report simultaneous determination of the mass and position of micro-beads attached to a nanoscale...
The mass sensing superiority of a micro-/nano-mechanical resonator sensor over conventional mass spe...
The mass sensing superiority of a micro-/nano-mechanical resonator sensor over conventional mass spe...
In this work we study the different phenomena taking place when a hydrostatic pressure is applied in...
The mass sensing superiority of a micro-/nano-mechanical resonator sensor over conventional mass spe...
Assumption-free mass quantification of nanofilms, nanoparticles, and (supra)molecular adsorbates in ...
Nanomechanical resonators enable the measurement of mass with extraordinary sensitivity1, 2, 3, 4, 5...
Nanoelectromechanical cantilevers have achieved unprecedented sensitivity in the detection of displa...
Viscous damping severely limits the performance of resonator based sensing in liquids. We present en...
Resonant sensors and crystal oscillators for mass detection need to be excited at very high natural ...
Micro and nanomechanical resonators are powerful and label-free sensors of analytes in various envir...
Using suspended nanochannel resonators (SNRs) we demonstrate measurements of mass in solution with a...