Graphene-Based Platform for Infrared Near-Field Nanospectroscopy of Water and Biological Materials in an Aqueous Environment
arXiv:1509.01743 · doi:10.1021/acsnano.5b01184
Abstract
Scattering scanning near-field optical microscopy (s-SNOM) has emerged as a powerful nanoscale spectroscopic tool capable of characterizing individual biomacromolecules and molecular materials. However, applications of scattering-based near-field techniques in the infrared (IR) to native biosystems still await a solution of how to implement the required aqueous environment. In this work, we demonstrate an IR-compatible liquid cell architecture that enables near-field imaging and nanospectroscopy by taking advantage of the unique properties of graphene. Large-area graphene acts as an impermeable monolayer barrier that allows for nano-IR inspection of underlying molecular materials in liquid. Here, we use s-SNOM to investigate the tobacco mosaic virus (TMV) in water underneath graphene. We resolve individual virus particles and register the amide I and II bands of TMV at ca. 1520 and 1660 cm, respectively, using nanoscale Fourier transform infrared spectroscopy (nano-FTIR). We verify the presence of water in the graphene liquid cell by identifying a spectral feature associated with water absorption at 1610 cm.
25 pages, 5 figures
References in corpus (8)
- Black phosphorus field-effect transistors
- Emerging Device Applications for Semiconducting Two-Dimensional Transition Metal Dichalcogenides
- Superior mechanical flexibility of phosphorene and few-layer black phosphorus
- Square ice in graphene nanocapillaries
- Subdiffractional focusing and guiding of polaritonic rays in a natural hyperbolic material
- Electronic and plasmonic phenomena at graphene grain boundaries
- Colloquium: Graphene spectroscopy
- Scanning Tunneling Microscopy Study and Nanomanipulation of Graphene-Coated Water on Mica
Cited by in corpus (8)
- Tip-Enhanced Infrared Difference-Nanospectroscopy of the Proton Pump Activity of Bacteriorhodopsin in Single Purple Membrane Patches
- Amplitude- and phase-resolved nano-imaging and nano-spectroscopy of polaritons in liquid environment
- Probing Mid-Infrared Phonon Polaritons in the Aqueous Phase
- Infrared nano-spectroscopy of ferroelastic domain walls in hybrid improper ferroelectric CaTiO
- Electrochemistry and Optical Microscopy
- Review on Infrared Nanospectroscopy of Natural 2D Phyllosilicates
- Multifrequency Excitation and Detection Scheme in Apertureless Scattering Near Field Scanning Optical Microscopy
- Quantitative Analytical Model for Scattering-type Scanning Near-field Optical Spectroscopy