Color-Stable Formulations for 3D-Photoprintable Dental Materials.

Polymers (Basel)

Institute of Applied Synthetic Chemistry, Vienna University of Technology, Getreidemarkt 9/163 MC, A-1060 Vienna, Austria.

Published: August 2024

AI Article Synopsis

  • Color stability is essential in dental materials for a perfect match with a patient's tooth color, but it's especially difficult in photoresist-based 3D printing.
  • This study examines the intrinsic causes of discoloration by testing thin-film samples of different compositions under various storage conditions and monitoring changes using UV-Vis absorption spectra.
  • Findings highlight that both material composition and storage conditions affect discoloration, and using certain photoinitiators and stabilizers, along with an oxidizing agent, significantly improves color stability in the materials.

Article Abstract

Color stability is crucial for dental materials to ensure they perfectly match a patient's tooth color. This is particularly challenging in photoresist-based additive manufacturing. Although some studies have addressed this issue, the exact causes of discoloration and ways to minimize it remain unclear. In this study, the intrinsic causes of discoloration in materials intended for 3D printing are investigated by examining thin-film samples (1200 µm) of various compositions, which are stored under different conditions. The samples are evaluated by measuring the UV-Vis absorption spectra at regular intervals to monitor changes. The findings reveal that both the composition of the formulations and the storage conditions significantly influence the discoloration behavior. Furthermore, methods have been developed to reduce or completely prevent discoloration. The use of photoinitiators with sterically demanding benzoyl moieties, as well as the addition of stabilizers, effectively decreases the intensity of emerging discoloration. Furthermore, incorporating the oxidizing agent cumene hydroperoxide (CHP) results in materials that maintain color stability.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11359577PMC
http://dx.doi.org/10.3390/polym16162323DOI Listing

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