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Weighing of biomolecules, single cells and single nanoparticles in fluid

机译:称量流体中的生物分子,单细胞和单个纳米颗粒

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Nanomechanical resonators enable the measurement of mass with extraordinary sensitivity. Previously, samples as light as 7 zepto-grams (1 zg = 10~(-21) g) have been weighed in vacuum, and proton-level resolution seems to be within reach. Resolving small mass changes requires the resonator to be light and to ring at a very pure tone—that is, with a high quality factor. In solution, viscosity severely degrades both of these characteristics, thus preventing many applications in nanotechnology and the life sciences where fluid is required. Although the resonant structure can be designed to minimize viscous loss, resolution is still substantially degraded when compared to measurements made in air or vacuum. An entirely different approach eliminates viscous damping by placing the solution inside a hollow resonator that is surrounded by vacuum. Here we demonstrate that suspended microchannel resonators can weigh single nanoparticles, single bacterial cells and sub-monolayers of adsorbed proteins in water with sub-femtogram resolution (1 Hz bandwidth). Central to these results is our observation that viscous loss due to the fluid is negligible compared to the intrinsic damping of our silicon crystal resonator. The combination of the low resonator mass (100 ng) and high quality factor (15,000) enables an improvement in mass resolution of six orders of magnitude over a high-end commercial quartz crystal microbalance. This gives access to intriguing applications, such as mass-based flow cytometry, the direct detection of pathogens, or the non-optical sizing and mass density measurement of colloidal particles.
机译:纳米机械谐振器能够以非凡的灵敏度进行质量测量。以前,已经在真空中称取了7克(1克= 10〜(-21)克)轻的样品,质子级分辨率似乎可以达到。要解决小的质量变化,就需要使谐振器轻巧并且以非常纯净的音调(即具有高品质因数)响起。在溶液中,粘度严重降低了这两个特性,从而阻止了在需要流体的纳米技术和生命科学中的许多应用。尽管可以设计谐振结构以最大程度地减少粘性损失,但与在空气或真空中进行的测量相比,分辨率仍显着下降。完全不同的方法是将溶液放置在被真空包围的空心谐振器内部,从而消除了粘性阻尼。在这里,我们证明了悬浮的微通道谐振器可以以亚飞克图分辨率(1 Hz带宽)称量水中的单个纳米颗粒,单个细菌细胞和吸附蛋白的亚单层。这些结果的核心是我们的观察结果,即与我们的硅晶体谐振器的固有阻尼相比,由于流体引起的粘性损失可忽略不计。低谐振器质量(100 ng)和高质量因数(15,000)的组合使质量分辨率比高端商用石英晶体微天平提高了六个数量级。这提供了有趣的应用程序,例如基于质量的流式细胞仪,病原体的直接检测或胶体颗粒的非光学尺寸和质量密度测量。

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