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Spin State Switching Triggered By Light - Both Spacer Length And Parity Influence The Thermal And Light-Induced Properties Of Spin Crossover Coordination Polymers Book

Spin State Switching Triggered By Light - Both Spacer Length And Parity Influence The Thermal And Light-Induced Properties Of Spin Crossover Coordination Polymers
Spin State Switching Triggered By Light - Both Spacer Length And Parity Influence The Thermal And Light-Induced Properties Of Spin Crossover Coordination Polymers, The influence of non-coordinating anions and spacer length of the ligand is analysed in extension of the systematic investigations into iron(II) spin cossover coordination polymers. Ditetrazole complexes of iron(II) perchlorate, tetrafluoroborate and hexa, Spin State Switching Triggered By Light - Both Spacer Length And Parity Influence The Thermal And Light-Induced Properties Of Spin Crossover Coordination Polymers has a rating of 3.5 stars
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Spin State Switching Triggered By Light - Both Spacer Length And Parity Influence The Thermal And Light-Induced Properties Of Spin Crossover Coordination Polymers, The influence of non-coordinating anions and spacer length of the ligand is analysed in extension of the systematic investigations into iron(II) spin cossover coordination polymers. Ditetrazole complexes of iron(II) perchlorate, tetrafluoroborate and hexa, Spin State Switching Triggered By Light - Both Spacer Length And Parity Influence The Thermal And Light-Induced Properties Of Spin Crossover Coordination Polymers
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  • Spin State Switching Triggered By Light - Both Spacer Length And Parity Influence The Thermal And Light-Induced Properties Of Spin Crossover Coordination Polymers
  • Written by author Alina Absmeier
  • Published by Sudwestdeutscher Verlag fur Hochschulschriften AG, December 2008
  • The influence of non-coordinating anions and spacer length of the ligand is analysed in extension of the systematic investigations into iron(II) spin cossover coordination polymers. Ditetrazole complexes of iron(II) perchlorate, tetrafluoroborate and hexa
  • The influence of non-coordinating anions and spacer length of the ligand is analysed in extension of the systematic investigations into iron(II) spin cossover coordination polymers. Ditetrazole complexes of iron(II) perchlorate, tetrafluoroborate and hexa
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The influence of non-coordinating anions and spacer length of the ligand is analysed in extension of the systematic investigations into iron(II) spin cossover coordination polymers. Ditetrazole complexes of iron(II) perchlorate, tetrafluoroborate and hexafluorophosphate where the two tetrazole moieties are separated by alkylene spacers with different number of carbon atoms (n) are presented. Pronounced structural, optical, magnetic and magneto- optical changes are analysed and found in the comparison of the two series.The results allow a deeper insight in coherences between structural changes and electronic occupations, which can be detected as thermal, optical or magnetic spin transitions.


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Spin State Switching Triggered By Light - Both Spacer Length And Parity Influence The Thermal And Light-Induced Properties Of Spin Crossover Coordination Polymers, The influence of non-coordinating anions and spacer length of the ligand is analysed in extension of the systematic investigations into iron(II) spin cossover coordination polymers. Ditetrazole complexes of iron(II) perchlorate, tetrafluoroborate and hexa, Spin State Switching Triggered By Light - Both Spacer Length And Parity Influence The Thermal And Light-Induced Properties Of Spin Crossover Coordination Polymers

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Spin State Switching Triggered By Light - Both Spacer Length And Parity Influence The Thermal And Light-Induced Properties Of Spin Crossover Coordination Polymers, The influence of non-coordinating anions and spacer length of the ligand is analysed in extension of the systematic investigations into iron(II) spin cossover coordination polymers. Ditetrazole complexes of iron(II) perchlorate, tetrafluoroborate and hexa, Spin State Switching Triggered By Light - Both Spacer Length And Parity Influence The Thermal And Light-Induced Properties Of Spin Crossover Coordination Polymers

Spin State Switching Triggered By Light - Both Spacer Length And Parity Influence The Thermal And Light-Induced Properties Of Spin Crossover Coordination Polymers

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Spin State Switching Triggered By Light - Both Spacer Length And Parity Influence The Thermal And Light-Induced Properties Of Spin Crossover Coordination Polymers, The influence of non-coordinating anions and spacer length of the ligand is analysed in extension of the systematic investigations into iron(II) spin cossover coordination polymers. Ditetrazole complexes of iron(II) perchlorate, tetrafluoroborate and hexa, Spin State Switching Triggered By Light - Both Spacer Length And Parity Influence The Thermal And Light-Induced Properties Of Spin Crossover Coordination Polymers

Spin State Switching Triggered By Light - Both Spacer Length And Parity Influence The Thermal And Light-Induced Properties Of Spin Crossover Coordination Polymers

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