Multimodal near-infrared spectroscopy for biosensing applications

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Neutsch, Krisztian, Nikolic, Jana, Mafakheri, Asra, Stegemann, Jan, Kruss, Sebastian
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866915472520249344
author Neutsch, Krisztian
Nikolic, Jana
Mafakheri, Asra
Stegemann, Jan
Kruss, Sebastian
author_facet Neutsch, Krisztian
Nikolic, Jana
Mafakheri, Asra
Stegemann, Jan
Kruss, Sebastian
contents The near infrared (NIR) region of the electromagnetic spectrum contains valuable information about vibrational overtone and combination modes. Additionally, fluorophores that emit in the NIR are desired because this spectral range falls into the tissue transparency window. However, NIR techniques are not as widespread as their counterparts in the visible range because detectors, microscopes and fluorophores are less available. Here, we present a NIR multimodal and low footprint spectroscopy (NIR-MMS) setup. The setup excites NIR fluorescence using a LED or uses broadband NIR light to capture absorption spectra in the range from 900 nm to 1650 nm with a fiber-coupled InGaAs spectrograph. We demonstrate the measurement of NIR fluorescent materials and biosensors for the neurotransmitter dopamine. Additionally, the setup allows to simultaneously measure absorption and emission spectra to assess chemical changes in NIR fluorescent carbon nanotubes. Overall, this small footprint setup provides simultaneous access to NIR fluorescence and absorption spectra with broad applications in biosensing.
format Preprint
id arxiv_https___arxiv_org_abs_2509_00775
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Multimodal near-infrared spectroscopy for biosensing applications
Neutsch, Krisztian
Nikolic, Jana
Mafakheri, Asra
Stegemann, Jan
Kruss, Sebastian
Optics
The near infrared (NIR) region of the electromagnetic spectrum contains valuable information about vibrational overtone and combination modes. Additionally, fluorophores that emit in the NIR are desired because this spectral range falls into the tissue transparency window. However, NIR techniques are not as widespread as their counterparts in the visible range because detectors, microscopes and fluorophores are less available. Here, we present a NIR multimodal and low footprint spectroscopy (NIR-MMS) setup. The setup excites NIR fluorescence using a LED or uses broadband NIR light to capture absorption spectra in the range from 900 nm to 1650 nm with a fiber-coupled InGaAs spectrograph. We demonstrate the measurement of NIR fluorescent materials and biosensors for the neurotransmitter dopamine. Additionally, the setup allows to simultaneously measure absorption and emission spectra to assess chemical changes in NIR fluorescent carbon nanotubes. Overall, this small footprint setup provides simultaneous access to NIR fluorescence and absorption spectra with broad applications in biosensing.
title Multimodal near-infrared spectroscopy for biosensing applications
topic Optics
url https://arxiv.org/abs/2509.00775