Raw Data for: Multimaterial MSLA-Printed Hydrogel with Spatially Tunable Rhodamine B Hydrazide and Zinc Porphyrin Domains for Color Vision Deficiency Correction

Published: 24 August 2026| Version 1 | DOI: 10.17632/tc4kh3fsrn.1
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This repository contains the raw experimental data supporting the manuscript "Multimaterial MSLA-Printed Hydrogel with Spatially Tunable Rhodamine B Hydrazide and Zinc Porphyrin Domains for Color Vision Deficiency Correction." The study reports single- and multimaterial HEMA/PEGDA contact lens disks fabricated via masked stereolithography (MSLA) 3D printing, incorporating rhodamine B hydrazide (RhB) and zinc porphyrin (ZnP) as spatially distinct dye domains, across a concentration matrix of both dyes (base resins HPT115, HPT911; single-dye disks R1, R3, R5 and Z1, Z2, Z3; multimaterial disks R5-Z1, R5-Z2, R5-Z3, R1-Z3, R3-Z3). Included datasets: Light transmission spectra of dry and hydrated disks Equilibrium water content (EWC) Swelling ratio (SR) Fourier transform infrared (FTIR-ATR) X-ray diffraction (XRD) patterns Gel fraction test data Tensile test data (stress-strain curves) All data were collected in triplicate (n = 3) unless otherwise noted and are provided as raw instrument output files corresponding to the figures and tables in the manuscript and its supporting information.

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