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Stress-induced variations in the stiffness of micro- and nanocantilever beams.
Phys Rev Lett. 2012 Jun 8;108(23):236101. doi: 10.1103/PhysRevLett.108.236101. Epub 2012 Jun 5.
2
Nanocantilever signal transduction by electron transfer.
J Nanosci Nanotechnol. 2002 Jun-Aug;2(3-4):369-73. doi: 10.1166/jnn.2002.091.
3
Mass and position determination of attached particles on cantilever based mass sensors.
Rev Sci Instrum. 2007 Oct;78(10):103303. doi: 10.1063/1.2804074.
4
Effective sensor properties and sensitivity considerations of a dynamic co-resonantly coupled cantilever sensor.
Beilstein J Nanotechnol. 2018 Sep 25;9:2546-2560. doi: 10.3762/bjnano.9.237. eCollection 2018.
5
The origin of ultrasound-induced friction reduction in microscopic mechanical contacts.
IEEE Trans Ultrason Ferroelectr Freq Control. 2002 Mar;49(3):356-64. doi: 10.1109/58.990954.
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Engineering in the nanocosmos: Nanorobotics moves kilograms of mass.
J Nanosci Nanotechnol. 2002 Jun-Aug;2(3-4):435-40. doi: 10.1166/jnn.2002.121.
7
Micro- and nanocantilever devices and systems for biomolecule detection.
Annu Rev Anal Chem (Palo Alto Calif). 2009;2:77-98. doi: 10.1146/annurev-anchem-060908-155232.
8
Nano measurements with micro-devices: mechanical properties of hydrated collagen fibrils.
J R Soc Interface. 2006 Feb 22;3(6):117-21. doi: 10.1098/rsif.2005.0100.
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Micro- and nanotechnology fabrication processes for metals.
Med Device Technol. 2004 Jun;15(5):21-3.

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A zinc oxide resonant nano-accelerometer with ultra-high sensitivity.
Nat Commun. 2024 May 31;15(1):4651. doi: 10.1038/s41467-024-49145-9.
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Acoustic Resonance Tuning by High-Order Lorentzian Mixing.
Nano Lett. 2024 May 13;24(24):7143-9. doi: 10.1021/acs.nanolett.4c00335.
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Protein adsorption by nanomechanical mass spectrometry: Beyond the real-time molecular weighting.
Front Mol Biosci. 2023 Jan 5;9:1058441. doi: 10.3389/fmolb.2022.1058441. eCollection 2022.
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Microcantilever: Dynamical Response for Mass Sensing and Fluid Characterization.
Sensors (Basel). 2020 Dec 27;21(1):115. doi: 10.3390/s21010115.
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Amplitude Dependence of Resonance Frequency and its Consequences for Scanning Probe Microscopy.
Sensors (Basel). 2019 Oct 17;19(20):4510. doi: 10.3390/s19204510.
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How two-dimensional bending can extraordinarily stiffen thin sheets.
Sci Rep. 2016 Jul 11;6:29627. doi: 10.1038/srep29627.

本文引用的文献

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A nanoscale parametric feedback oscillator.
Nano Lett. 2011 Nov 9;11(11):5054-9. doi: 10.1021/nl2031162. Epub 2011 Oct 25.
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Detection of bacteria based on the thermomechanical noise of a nanomechanical resonator: origin of the response and detection limits.
Nanotechnology. 2008 Jan 23;19(3):035503. doi: 10.1088/0957-4484/19/03/035503. Epub 2007 Dec 13.
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Shedding light on axial stress effect on resonance frequencies of nanocantilevers.
ACS Nano. 2011 Jun 28;5(6):4269-75. doi: 10.1021/nn200623c. Epub 2011 May 16.
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Comparative advantages of mechanical biosensors.
Nat Nanotechnol. 2011 Apr;6(4):203-15. doi: 10.1038/nnano.2011.44. Epub 2011 Mar 27.
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Surface adsorbate fluctuations and noise in nanoelectromechanical systems.
Nano Lett. 2011 Apr 13;11(4):1753-9. doi: 10.1021/nl2003158. Epub 2011 Mar 9.
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Towards single-molecule nanomechanical mass spectrometry.
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Ultra-sensitive NEMS-based cantilevers for sensing, scanned probe and very high-frequency applications.
Nat Nanotechnol. 2007 Feb;2(2):114-20. doi: 10.1038/nnano.2006.208. Epub 2007 Jan 28.
8
Effect of surface stress on the stiffness of cantilever plates.
Phys Rev Lett. 2007 Nov 16;99(20):206102. doi: 10.1103/PhysRevLett.99.206102. Epub 2007 Nov 15.
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Anomalous resonance in a nanomechanical biosensor.
Proc Natl Acad Sci U S A. 2006 Sep 5;103(36):13362-7. doi: 10.1073/pnas.0602022103. Epub 2006 Aug 28.
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Dynamical response of nanomechanical oscillators in immiscible viscous fluid for in vitro biomolecular recognition.
Phys Rev Lett. 2006 May 12;96(18):186105. doi: 10.1103/PhysRevLett.96.186105. Epub 2006 May 11.

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