Enabling solid sample analysis in liquid spectrophotometers with a 3D-printed cuvette

J Jacques Doumani H Henry Mansfield A Andrey Baydin S Somesh Sasmal M Mario El Tahchi W Weilu Gao J Junichiro Kono

Abstract

Abstract Most commercial systems for ultraviolet-visible (UV–VIS), Fourier-transform infrared, circular dichroism (CD), and fluorescence spectroscopies are designed for measurement of liquid samples. Moreover, adapters enabling the measurement of solid samples are expensive or unavailable for most commercial instruments. Consequently, there is a significant need for solid sample adapters that enable measurement of both liquid and solid samples with a single system. Here, we report two versions of a solid sample adapter cuvette that can be used in most commercial spectroscopy instruments designed for transmission measurement of liquid samples. One version is designed for techniques that do not require changing the sample orientation, and the other allows easy sample rotation. We successfully fabricated these cuvettes by 3D printing with both fused deposition modeling and stereolithography and demonstrated how they enable us to study the optical properties of macroscopic films of aligned carbon nanotubes by performing UV–VIS and CD spectroscopy measurements with the cuvettes. These 3D printed cuvettes and their implementation will help enable a wide range of experiments at a low cost.

Article Details

Volume / Issue Vol. 15, Issue 1
Published February 20, 2025
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (7)

J

Jacques Doumani

H

Henry Mansfield

A

Andrey Baydin

S

Somesh Sasmal

M

Mario El Tahchi

W

Weilu Gao

J

Junichiro Kono