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Open AccessJournal ArticleDOI

Spin-crossover nanoparticles and nanocomposite materials

Lionel Salmon, +1 more
- 01 Dec 2018 - 
- Vol. 21, Iss: 12, pp 1230-1269
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TLDR
In this article, the state of the art of the elaboration and the application of nanoparticles and nanohybrid/nanocomposite materials based on spin-crossover (SCO) complexes is reported.
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This article is published in Comptes Rendus Chimie.The article was published on 2018-12-01 and is currently open access. It has received 76 citations till now. The article focuses on the topics: Nanocomposite.

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Citations
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Journal ArticleDOI

OctaDist: a tool for calculating distortion parameters in spin crossover and coordination complexes.

TL;DR: OctaDist computes the octahedral distortion parameters initially designed in the context of the spin-crossover phenomenon and denoted ζ, Σ, and Θ from standard structural files.
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Electrical conductivity and magnetic bistability in metal–organic frameworks and coordination polymers: charge transport and spin crossover at the nanoscale

TL;DR: This review aims to summarise the chemical strategies that have guided the design of conductive metal-organic frameworks and the identified opportunities for further development and showcase relevant examples of functional devices that have received increasing attention from researchers.
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Spin crossover polymer composites, polymers and related soft materials

TL;DR: In this article, the synthesis, properties and applications of spin crossover polymer composites, polymers and some related soft materials are reviewed, with a particular attention paid on the influence of the polymer matrix on the spin crossover properties and on the use of active polymers for development of synergies between the properties of the matrix and the load.
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Spin crossover and valence tautomerism conductors

TL;DR: In this paper, the authors present the recent progress on spin crossover and valence tautomerism conductors, focusing on syntheses, strategies, crystal structures, magnetic properties, and conductivities of such materials as well as synergistic and cooperative properties of bistability and conductivity.
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Confined Crystallization of Spin‐Crossover Nanoparticles in Block‐Copolymer Micelles

TL;DR: Nanoparticles of the spin‐crossover coordination polymer [FeL(bipy)]n were synthesized by confined crystallization within the core of polystyrene‐block‐poly(4‐vinylpyridine) (PS‐b‐P4VP) diblock copolymer micelles allowing thermal treatment without disintegration of their structure.
References
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Journal ArticleDOI

Room Temperature Magnetic Detection of Spin Switching in Nanosized Spin-Crossover Materials

TL;DR: The synthesis and investigation of nanoscale spin-crossover particles at reduced length scales is central to the exploration of fundamental effects of size reduction in these systems, but also for the development of new functional materials with applications, including guest molecule sensing, memory devices, and molecular switches.
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Water effect on the spin-transition behavior of Fe(II) 1,2,4-triazole 1D chains embedded in pores of MCM-41

TL;DR: In this article, the spin crossover behavior of the SCO-1@MCM composites was investigated by temperature-variable 57Fe Mossbauer spectroscopy, magnetic and differential scanning calorimetry measurements and optical reflectivity.
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Micromachining-compatible, facile fabrication of polymer nanocomposite spin crossover actuators

TL;DR: In this article, spin crossover particles of 85 nm mean size are dispersed in an SU-8 polymer matrix and spray-coated onto silicon microcantilevers, which exhibit well-reproducible actuation upon the thermally induced spin transition.
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Light induced modulation of charge transport phenomena across the bistability region in [Fe(Htrz)2(trz)](BF4) spin crossover micro-rods.

TL;DR: The effect of light irradiation on the electrical conductance of micro-rods of the spin crossover [Fe(Htrz)2(trz)](BF4) network, organized between interdigitated gold electrodes, is studied.
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On the stability of spin crossover materials: From bulk samples to electronic devices

TL;DR: In this paper, the integration of micro-rods of the [Fe(Htrz)2(trz)](BF4) spin crossover compound into an electronic switch-type device was reported.
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