Magnetic and electrical bistability in hybrid composites of conducting organic polymers with [Fe(NH2-trz)3]n[SO4]n

Fecha de publicación

2023-08-07



Resumen

Spin crossover (SCO) species hold significant potential as versatile building blocks for multifunctional hybrid materials. In our recent work, we introduced a novel postsynthetic mechanochemical processing approach to fabricate conductive composites of SCO compounds with organic conducting polymers exhibiting synergy between SCO bistability and transport properties. Here, we report the extension of this methodology to the SCO 1D coordination polymer [Fe(NH2-trz)3]n[SO4]n (NH2-trz = 1NH2-1,2,4-triazole). Remarkably, the ball milling processing also affects the thermal transition of the SCO component, yielding a wider hysteresis and at slightly higher transition temperatures. Upon integration with polypyrrole (PPY) or poly(3,4-ethylenedioxythiophene) (PEDOT), the hybrid SCO/polymer composites exhibit electrical bistability at room temperature, as evidenced by magnetic, transport and calorimetric analysis.

Tipo de documento

Artículo


Versión aceptada

Lengua

Inglés

Palabras clave

Química

Páginas

8 p.

Publicado por

Royal Society of Chemistry

Número del acuerdo de la subvención

European Union (ERC StG grant CHEMCOMP no. 279313)

Spanish Ministerio de Ciencia e Innovación through a Severo Ochoa Excellence Accreditation 2020–2023 (CEX2019-000925-S, MIC/AEI); and through the projects PID2021-124796OB-I00, RTI2018-095618-B-I00

Generalitat de Catalunya (2021-SGR-1154)

CERCA Programme/Generalitat de Catalunya

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J. Mater. Chem. C 2023_Magnetic and electrical bistability in hybrid composites.pdf

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