Preparation of thermochromic ink from anthocyanidin‐encapsulated alginate nanoparticles for anticounterfeiting applications

Author:

Khalaf Mai. M.12,Gouda Mohamed1ORCID,Hamdalla Taymour A.3,Abou Taleb Manal F.4,Abd El‐Lateef Hany M.12

Affiliation:

1. Department of Chemistry, College of Science King Faisal University Al‐Ahsa Saudi Arabia

2. Department of Chemistry, Faculty of Science Sohag University Sohag Egypt

3. Physics department faculty of science University of Tabuk Tabuk Saudi Arabia

4. Department of Chemistry, College of Science and Humanities Prince Sattam Bin Abdulaziz University Al‐Kharj Saudi Arabia

Abstract

AbstractIn order to make commercial products less vulnerable to counterfeiting, thermochromic inks have proven to be a viable authentication strategy. Herein, we developed a thermochromic ink for authentication by combining an anthocyanidin (ACYD) extract with alginate (ALG). To increase the anthocyanidin/alginate ink stability, a mordant (ferrous sulfate) was employed to tie up the anthocyanidin biomolecules with alginate. ACYD was extracted from red‐cabbage and then immobilized into alginate to serve as an environmentally friendly spectroscopic probe. Thermochromic composite inks (ACYD@ALG) were made by adjusting the content of anthocyanidin. A homogenous blue film (608 nm) was printed on a paper surface and investigated by the CIE Lab coordinate system. The blue color transformed into reddish (477 nm) when heated from 35°C to 65°C. Nanoparticles (NPs) of anthocyanidin/mordant (ACYD/M) were examined for their size and morphology to indicate diameters of 80–90 nm, whereas the ACYD/M‐encapsulated alginate nanoparticles showed diameters of 120–150 nm. Multiple analytical techniques were utilized to examine the printed papers. The mechanical and rheological performance of both stamped sheets and ink fluid were explored. The cytotoxicity and antimicrobial efficacy of ink (ACYD@ALG) were investigated.

Publisher

Wiley

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