Nanomechanical resonators can quantify individual particles down to a single atom; however the applications are limited due to their degraded performance in solution. Suspended micro- and nanochannel resonators can achieve vacuum level performances for samples in solution since the target analyte flows through an integrated channel within the resonator. Here we report on a new generation suspended nanochannel resonator (SNR) that operates at approximately 2 MHz with quality factors between 10,000-20,000. The SNR is measured to have a mass sensitivity of 8.2 mHz/attogram. With an optimized oscillator system, we show that the resonator can be oscillated with a mass equivalent frequency stability of 0.85 attogram (4 parts-perbillion) at 1 kHz ...
Simultaneously measuring multiple eigenmode frequencies of nanomechanical resonators can determine t...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
Nanomechanical resonators can now be realized that achieve fundamental resonance frequencies exceedi...
Physical characterization of nanoparticles is required for a wide range of applications. Nanomechani...
Using suspended nanochannel resonators (SNRs) we demonstrate measurements of mass in solution with a...
Nanomechanical resonators enable the measurement of mass with extraordinary sensitivity1, 2, 3, 4, 5...
Suspended nanochannel resonators (SNRs) are promising devices able to characterize mass down to the ...
We introduce the use of correlation analysis to extend the dynamic range of Suspended Micro- and Nan...
Suspended nanochannel resonators (SNRs) are promising devices able to characterize mass down to the ...
Nanomechanical resonators enable the measurement of mass with extraordinary sensitivity1, 2, 3, 4, 5...
[[abstract]]Nanomechanical resonators can now be realized that achieve fundamental resonance frequen...
In connection with growing in applications of nanoparticles in various industrial sectors such as co...
Suspended microchannel resonators (SMRs) are an innovative approach to fluid-based microelectromech...
Suspended microchannel resonators (SMRs) are an innovative approach to fluid-based microelectromech...
The use of nanoparticles has been growing in various industrial fields, and concerns about their eff...
Simultaneously measuring multiple eigenmode frequencies of nanomechanical resonators can determine t...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
Nanomechanical resonators can now be realized that achieve fundamental resonance frequencies exceedi...
Physical characterization of nanoparticles is required for a wide range of applications. Nanomechani...
Using suspended nanochannel resonators (SNRs) we demonstrate measurements of mass in solution with a...
Nanomechanical resonators enable the measurement of mass with extraordinary sensitivity1, 2, 3, 4, 5...
Suspended nanochannel resonators (SNRs) are promising devices able to characterize mass down to the ...
We introduce the use of correlation analysis to extend the dynamic range of Suspended Micro- and Nan...
Suspended nanochannel resonators (SNRs) are promising devices able to characterize mass down to the ...
Nanomechanical resonators enable the measurement of mass with extraordinary sensitivity1, 2, 3, 4, 5...
[[abstract]]Nanomechanical resonators can now be realized that achieve fundamental resonance frequen...
In connection with growing in applications of nanoparticles in various industrial sectors such as co...
Suspended microchannel resonators (SMRs) are an innovative approach to fluid-based microelectromech...
Suspended microchannel resonators (SMRs) are an innovative approach to fluid-based microelectromech...
The use of nanoparticles has been growing in various industrial fields, and concerns about their eff...
Simultaneously measuring multiple eigenmode frequencies of nanomechanical resonators can determine t...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
Nanomechanical resonators can now be realized that achieve fundamental resonance frequencies exceedi...