Tailoring Photochromism Beyond Human Eye Visibility: On/Off Switchable NIR Absorption in an Aluminosilicate

B Bettiina Muurinen (Department of Chemistry University of Turku Turku Finland) H Hannah Byron (Department of Chemistry University of Turku Turku Finland) T Teppo Kreivilä (Department of Chemistry University of Turku Turku Finland) R Roosa Vastamäki (Department of Chemistry University of Turku Turku Finland) S Sami Vuori (Department of Chemistry University of Turku Turku Finland) T Tomasz Galica (Department of Mechanical and Materials Engineering University of Turku Turku Finland) I Ian P. Machado (Department of Chemistry University of Turku Turku Finland) S Sari Granroth (Department of Physics and Astronomy University of Turku Turku Finland) B Basit Ali M Maarit Karppinen (Department of Chemistry and Materials Science, Aalto University) I Ivo Heinmaa (National Institute of Chemical Physics and Biophysics Tallinn Estonia) M Milica Todorović (Department of Mechanical and Materials Engineering, University of Turku 3 , FI-20014 Turku,) R Raphael Rullan (ENS de Lyon CNRS Lyon France) S Stephan Steinmann T Tangui Le Bahers (ENS de Lyon CNRS Lyon France) M Mika Lastusaari (Department of Chemistry University of Turku Turku Finland)

Abstract

ABSTRACT Photochromic materials are able to change reversibly between two colors. The color change is triggered by ultraviolet radiation and reversed by white light and/or heating. Inorganic photochromes have been thought to operate with fixed wavelengths only, and because of this, their usage has been considered less convenient than that of their organic counterparts, even if the inorganic ones would show a much higher durability in applications. High‐tunability within the whole visible wavelength range was recently demonstrated by some of us for hackmanites, a family of inorganic aluminosilicates. Here, we demonstrate that a davyne‐type structure constitutes the first photochromic material exhibiting absorption exclusively in the near‐infrared region, without accompanying visible color changes, thereby enabling fully invisible photochromism beyond human perception. Furthermore, we show that the invisible photochromic changes can be detected with a simple camera setup. This is the first material that exhibits invisible near‐infrared reversible photochromism, and we discuss its potential for tagging applications.

Article Details

Volume / Issue Vol. 1, Issue 1
Published July 21, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (16)

B

Bettiina Muurinen

Department of Chemistry University of Turku Turku Finland

H

Hannah Byron

Department of Chemistry University of Turku Turku Finland

T

Teppo Kreivilä

Department of Chemistry University of Turku Turku Finland

R

Roosa Vastamäki

Department of Chemistry University of Turku Turku Finland

S

Sami Vuori

Department of Chemistry University of Turku Turku Finland

T

Tomasz Galica

Department of Mechanical and Materials Engineering University of Turku Turku Finland

I

Ian P. Machado

Department of Chemistry University of Turku Turku Finland

S

Sari Granroth

Department of Physics and Astronomy University of Turku Turku Finland

B

Basit Ali

M

Maarit Karppinen

Department of Chemistry and Materials Science, Aalto University

I

Ivo Heinmaa

National Institute of Chemical Physics and Biophysics Tallinn Estonia

M

Milica Todorović

Department of Mechanical and Materials Engineering, University of Turku 3 , FI-20014 Turku,

R

Raphael Rullan

ENS de Lyon CNRS Lyon France

S

Stephan Steinmann

T

Tangui Le Bahers

ENS de Lyon CNRS Lyon France

M

Mika Lastusaari

Department of Chemistry University of Turku Turku Finland