Characterizing Nanoparticle Mass Distributions Using Charge-Independent Nanoresonator Mass Spectrometry

Szu Hsueh Lai, Adrien Reynaud, Ning Ning Zhang, Minjeong Kwak, Bogdan Vysotskyi, Sergio Dominguez-Medina, Thomas Fortin, Kavya Clement, Martial Defoort, Tae Geol Lee, Kun Liu, Sébastien Hentz, Christophe D. Masselon

研究成果: Article同行評審

4 引文 斯高帕斯(Scopus)

摘要

Due to their unique size-dependent properties, nanoparticles (NPs) have many industrial and biomedical applications. Although NPs are generally characterized based on the size or morphological analysis, the mass of whole particles can be of interest as it represents the total amount of material in the particle regardless of shape, density, or elemental composition. In addition, the shape of nonspherical NPs presents a conceptual challenge, making them difficult to characterize in terms of size or morphological characteristics. Here, we used a novel nano-electro-mechanical sensor mass spectrometry (NEMS-MS) technology to characterize the mass distributions of various NPs. For standard spherical gold NPs, mass distributions covered the range from ∼5 to 250 MDa (8 to ∼415 attograms). Applying the density of gold (19.3 g/cm3) and assuming perfect sphericity, these mass measurements were used to compute the equivalent diameters of the NPs. The sizes determined agreed well with the transmission electron microscopy (TEM) imaging data, with deviations of ∼1.4%. Subsequently, we analyzed the mass distribution of ∼50 nm synthetic silicon dioxide particles, having determined their size by electron microscopy (SEM and TEM). Their estimated density was in line with the literature values derived from differential mobility analyzer and aerosol particle mass analyzer data. Finally, we examined the intact gold nanotetrapods and obtained a mass distribution revealing their controlled polydispersity. The presence of polyethylene glycol coating was also quantified and corroborated nuclear magnetic resonance observations. Our results demonstrate the potential of NEMS-MS-based measurements as an effective means to characterize NPs, whatever their composition, shape or density.

原文English
頁(從 - 到)20946-20953
頁數8
期刊Journal of Physical Chemistry C
126
發行號49
DOIs
出版狀態Published - 2022 12月 15

All Science Journal Classification (ASJC) codes

  • 電子、光磁材料
  • 一般能源
  • 物理與理論化學
  • 表面、塗料和薄膜

指紋

深入研究「Characterizing Nanoparticle Mass Distributions Using Charge-Independent Nanoresonator Mass Spectrometry」主題。共同形成了獨特的指紋。

引用此