首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >A computational perspective on magnetic coupling, magneto-structural correlations and magneto-caloric effect of a ferromagnetically coupled {Gd~(III)-Gd~(III)} Pair
【24h】

A computational perspective on magnetic coupling, magneto-structural correlations and magneto-caloric effect of a ferromagnetically coupled {Gd~(III)-Gd~(III)} Pair

机译:铁磁耦合{Gd〜(III)-Gd〜(III)}对的磁耦合,磁结构相关性和磁热效应的计算观点

获取原文
获取原文并翻译 | 示例
           

摘要

Density functional calculations have been performed on a dinuclear {Gd~(III)-Gd~(III)} complex [{Gd(OAc) _3(H_2O)_2}_2]·4H_2O (1) which has recently been reported to have a very large MCE [M. Evangelisti, O. Roubeau, E. Palacios, A. Camon, T.N. Hooper, E.K. Brechin, J.J. Alonso, Angew. Chem., Int. Ed. 50 (2011) 6606]. The focus here is (i) to asses a suitable functional within DFT framework to compute good numerical estimate of J values (ii) to probe the mechanism of coupling between the two Gd~(III) ions via computational means (iii) to develop magneto-structural correlations to relate the sign and strength of J to specific structural parameter and (iv) to conceive the origin of large magneto-caloric effect (MCE) observed. Testing a series of functionals and a set of basis sets, it is evident that the hybrid B3LYP functional behaves marginally well over others with a combination of SARC basis set incorporating ZORA (zeroth-order regular approximation) relativistic effect for the GdIII ions. The MO and NBO tools have been utilized to probe the mechanism of coupling and this reveals that there are two contributions. The first is charge transfer in nature leading to a ferromagnetic contribution due to the involvement of empty 6s/5d/6p orbitals of Gd~(III) ions and the second contribution is due to 4f-4f orbital overlap and this adds to both ferro and antiferromagnetic part of the exchange. In 1, the ferromagnetic contribution prevails over the other leading to a net ferromagnetic J. The developed magneto-structural correlations reveal that the Gd-O-Gd angle is an important parameter as it switches the coupling from ferro to antiferro at lower angles. A weak intermolecular ferromagnetic interaction mediating via H-bonding interaction results in a ferromagnetic interaction at low temperatures and hence a large MCE.
机译:对双核{Gd〜(III)-Gd〜(III)}络合物[{Gd(OAc)_3(H_2O)_2} _2]·4H_2O(1)进行了密度泛函计算,该化合物最近被报道具有MCE非常大[M. Evangelisti,O.Roubeau,E.Palacios,A.Camon,T.N。胡珀(英国)布雷钦(J.J.阿隆索,Angew。 Chem。,Int。埃德50(2011)6606]。这里的重点是(i)在DFT框架中评估合适的功能以计算J值的良好数值估计(ii)通过计算手段(iii)探索两个Gd〜(III)离子之间的耦合机理以发展磁能-结构相关,将J的符号和强度与特定结构参数相关;以及(iv)设想观察到的大磁热效应(MCE)的起源。通过测试一系列功能和一组基集,很明显,混合的B3LYP官能团与结合了ZORA(零级正则逼近)相对论效应的GdIII离子的SARC基集的组合相比,其功能稍好。 MO和NBO工具已被用来探究耦合机制,这表明有两个贡献。首先是由于Gd〜(III)离子空的6s / 5d / 6p轨道参与而导致的自然电荷转移,其次是由于4f-4f轨道交叠而引起的铁磁贡献,反铁磁部分的交换。在图1中,铁磁贡献占主导地位,最终导致净铁磁J。发达的磁结构相关性表明,Gd-O-Gd角是一个重要参数,因为它在较低角度下将铁磁耦合转换为反铁磁。通过H键相互作用介导的弱分子间铁磁相互作用导致在低温下的铁磁相互作用,并因此导致大的MCE。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号