The crystal chemistry of spin crossover (SCO) behavior in coordination compounds can potentially be in association with smart materials—promising materials for applications as components of memory devices, displays, sensors and mechanical devices and, especially, actuators, such as artificial muscles. This Special Issue is devoted to various aspects of SCO and related research, comprising 18 interesting original papers on valuable and important SCO topics. Significant and fundamental scientific attention has been focused on the SCO phenomena in a wide research range of fields of fundamental chemical and physical and related sciences, containing the interdisciplinary regions of chemical and physical sciences related to the SCO phenomena. Coo...
We describe the synthesis of switchable spin crossover materials via mechanochemistry for the first ...
The drive for ever smaller and faster computers has, in recent years, caused much research interest ...
In this chapter, selected results obtained so far on Fe(III) spin crossover compounds are summarized...
The spin-crossover (SCO) phenomenon originates from the intrinsic bistability of the d-electron conf...
This special issue, entitled "Spin Crossover (SCO) Research", illustrates the current relevance of a...
Metal-organic complex exhibiting spin crossover (SCO) behavior has drawn attention for its functiona...
The following work regards the synthesis and characterisation of compounds with the potential to u...
Spin-crossover (SCO) molecular solids are valued switchable materials for their common abrupt and re...
The phenomenon of spin-crossover has a large impact on the physical properties of a solid material, ...
[EN] This review provides an up to date survey of a singular class of iron(II) spin crossover (SCO) ...
Herein we present co-crystallisation as a strategy for materials discovery in the field of switchabl...
Spin crossover (SCO) active solid solutions with formula [FexZn1-x(Me1,3bpp)2](ClO4)2 (x = 0.10, 0.1...
The following work regards the synthesis and characterisation of compounds with the potential to un...
The spin crossover (SCO) phenomenon represents a source of multistability at the molecular level, an...
Els compostos d' "spin crossover" (SCO) són materials moleculars formats per ions metàl·lics amb con...
We describe the synthesis of switchable spin crossover materials via mechanochemistry for the first ...
The drive for ever smaller and faster computers has, in recent years, caused much research interest ...
In this chapter, selected results obtained so far on Fe(III) spin crossover compounds are summarized...
The spin-crossover (SCO) phenomenon originates from the intrinsic bistability of the d-electron conf...
This special issue, entitled "Spin Crossover (SCO) Research", illustrates the current relevance of a...
Metal-organic complex exhibiting spin crossover (SCO) behavior has drawn attention for its functiona...
The following work regards the synthesis and characterisation of compounds with the potential to u...
Spin-crossover (SCO) molecular solids are valued switchable materials for their common abrupt and re...
The phenomenon of spin-crossover has a large impact on the physical properties of a solid material, ...
[EN] This review provides an up to date survey of a singular class of iron(II) spin crossover (SCO) ...
Herein we present co-crystallisation as a strategy for materials discovery in the field of switchabl...
Spin crossover (SCO) active solid solutions with formula [FexZn1-x(Me1,3bpp)2](ClO4)2 (x = 0.10, 0.1...
The following work regards the synthesis and characterisation of compounds with the potential to un...
The spin crossover (SCO) phenomenon represents a source of multistability at the molecular level, an...
Els compostos d' "spin crossover" (SCO) són materials moleculars formats per ions metàl·lics amb con...
We describe the synthesis of switchable spin crossover materials via mechanochemistry for the first ...
The drive for ever smaller and faster computers has, in recent years, caused much research interest ...
In this chapter, selected results obtained so far on Fe(III) spin crossover compounds are summarized...