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ナフト-1,3,2-ジチアゾリルにおける磁気バイスタビリティ: シアジルπ-ラジカルとそのN-N σ-結合ディマーの固体相互変換
Demetris Bates1, Craig M Robertson1, Alicea A Leitch2
1Department of Chemistry , University of Liverpool , Liverpool L69 7ZD , United Kingdom.
Journal of the American Chemical Society
|March 8, 2018
まとめ
ナフト-1,3,2-ジチアゾリル (NDTA) 結晶の磁性ビスタビリティは,根二元変化と関連している. このヘテロサイクルの根系は,重要な構造的シフトのために60Kの幅のフェーズ移行ウィンドウを示す.
科学分野:
- 材料科学
- 固体化学
- 分子磁気
背景:
- ナフト-1,3,2-ディシアゾリル (NDTA) はヘテロサイクルの化合物である.
- 磁気バイスタビリティと相転換は分子材料における重要な現象である.
研究 の 目的:
- NDTAの結晶における磁気バイスタビリティと相変化メカニズムを調査する.
- 構造の変化と磁気特性を相関させる.
主な方法:
- 温度変数X線結晶学
- 磁気特性の測定
主要な成果:
- NDTA結晶は,異なる移行温度 (Tc↓=128 K,Tc↑=188 K) を有する磁気バイスタビリティを示す.
- 段階移行は,結晶構造内の根元/二分子の相互変換を含みます.
- 高温相 (HT-NDTA) はパラマグネティックなS=1/2ラジカル,低温相 (LT-NDTA) は半分のS=0ダイマー,半分のS=1/2ラジカルを示している.
- 移行中の実質的な構造変更に起因する幅60Kのビスタビリティの窓が観察されています.
結論:
- NDTAの観測された磁気ビスタビリティは,可逆的な根二分子の均衡によって引き起こされる.
- 段階移行に伴う重要な構造の変化は,広いビスタビリティの窓にとって不可欠です.
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