Department of Biological Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
Nano Lett. 2010 Jul 14;10(7):2537-42. doi: 10.1021/nl101107u.
Using suspended nanochannel resonators (SNRs), we demonstrate measurements of mass in solution with a resolution of 27 ag in a 1 kHz bandwidth, which represents a 100-fold improvement over existing suspended microchannel resonators and, to our knowledge, is the most precise mass measurement in liquid today. The SNR consists of a cantilever that is 50 microm long, 10 microm wide, and 1.3 microm thick, with an embedded nanochannel that is 2 microm wide and 700 nm tall. The SNR has a resonance frequency near 630 kHz and exhibits a quality factor of approximately 8000 when dry and when filled with water. In addition, we introduce a new method that uses centrifugal force caused by vibration of the cantilever to trap particles at the free end. This approach eliminates the intrinsic position dependent error of the SNR and also improves the mass resolution by increasing the averaging time for each particle.
我们使用悬浮纳米通道谐振器 (SNR) 进行了测量,在 1 kHz 的带宽下,实现了 27 ag 的溶液质量分辨率,这比现有悬浮微通道谐振器提高了 100 倍,并且据我们所知,这是目前液体中最精确的质量测量方法。SNR 由一个 50 微米长、10 微米宽和 1.3 微米厚的悬臂组成,其中嵌入了一个 2 微米宽和 700nm 高的纳米通道。SNR 的共振频率接近 630 kHz,在干燥和充满水时的品质因数约为 8000。此外,我们引入了一种新方法,利用悬臂振动产生的离心力将颗粒捕获在自由端。这种方法消除了 SNR 的固有位置相关误差,并且通过增加每个颗粒的平均时间来提高质量分辨率。