发明名称 SHAPE ANALYSIS AND MASS SPECTROMETRY OF INDIVIDUAL MOLECULES BY NANOMECHANICAL SYSTEMS
摘要 The spatial distribution of mass within an individual analyte can be imaged - in real time and with molecular-scale resolution - when it adsorbs onto a nanomechanical resonator. Each single-molecule adsorption event induces discrete, time-correlated perturbations to the modal frequencies of the device. By continuous monitoring of multiple vibrational modes, the spatial moments of mass distribution can be deduced for individual analytes, one-by-one, as they adsorb. This new method was validated for inertial imaging using both experimental multimode frequency-shift data and finite-element simulations - to analyze the inertial mass, position-of-adsorption, and the shape of individual analytes. Unlike conventional imaging, the spatial resolution of nanomechanical inertial imaging is not limited by wavelength-dependent diffraction phenomena; instead frequency fluctuation processes determine the ultimate attainable resolution. Advanced NEMS devices can provide atomic-scale resolution.
申请公布号 WO2014130095(A2) 申请公布日期 2014.08.28
申请号 WO2013US62385 申请日期 2013.09.27
申请人 CALIFORNIA INSTITUTE OF TECHNOLOGY 发明人 ROUKES, MICHAEL L.;SADER, JOHN E.;KELBER, SCOTT I.;HANAY, MEHMET SELIM
分类号 G01G3/16 主分类号 G01G3/16
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