Color Change Effect in an Organic-Inorganic Hybrid Material Based on a Porphyrin Diacid
Bettina Wagner, Natalie Dehnhardt, Martin Schmid, Benedikt P. Klein,, Lukas Ruppenthal, Philipp M\"uller, Malte Zugermeier, J. Michael Gottfried,, Sina Lippert, Marc-Uwe Halbich, Arash Rahimi-Iman, Johanna Heine

TL;DR
This study reports a new organic-inorganic hybrid porphyrin material that exhibits reversible color change upon wetting, driven by a surface structural coloration effect, highlighting its potential for optical applications.
Contribution
The paper introduces a novel hybrid porphyrin compound with reversible color change caused by surface structural coloration, achieved through simple solution synthesis.
Findings
Exhibits broad photoluminescence between 650-850 nm.
Shows photocurrent and higher dark current in single crystals.
Displays reversible color change upon wetting with liquids.
Abstract
Porphyrinic materials show a range of interesting and useful optical and electrical properties. The less well-known sub-class of porphyrin diacids has been used in this work to construct an ionic hybrid organic-inorganic material in combination with a halogenidometalate anion. The resulting compound, (1) (TPyP = tetra(4-pyridyl)porphyrin) has been obtained via a facile solution based synthesis in single crystalline form. The material exhibits a broad photoluminescence emission band between 650 and 850 nm at room temperature. Single crystals of show a photocurrent in the fA and a much higher dark current in the nA range. They also display an unexpected reversible color change upon wetting with different liquids. This phenomenon has been investigated with optical spectroscopy, SEM, XPS and NEXAFS techniques, showing that a surface-based…
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Taxonomy
TopicsPorphyrin and Phthalocyanine Chemistry · Luminescence and Fluorescent Materials · Molecular Sensors and Ion Detection
