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1)  molecule-based magnet
分子基磁体
1.
A new substituted benzylpridiniums [NCBzPy]Cl was synthesized, futher, a molecule-based magnet [NCBzPy][Ni(dmit) 2] was synthesized and characterized by elemental analysis, IR and UV spectra.
合成了一种新的取代苄基吡啶盐 [NCBzPy]Cl( 1 ) ,1和NiCl2 ,dmit2 -反应生成分子基磁体 [NCBzPy][Ni(dmit) 2 ]( 2 ) ,其结构用元素分析、IR和UV进行了表征。
2.
Essentially all of the common magnetic phenomena associated with conventional transition-metal and rare-earth-based magnets can be found in molecule-based magnets.
分子基磁体作为一类广阔的、正在兴起的磁性材料,具有很多优良的性质,包括:低密度、透明性、电绝缘性、能低温合成等。
2)  molecular-based magnet
分子基磁体
1.
In the last decades, considerable efforts have been made to design and synthesize the molecular-based magnets.
近几十年来,人们在设计和合成分子基磁体方面付出了相当大地努力。
3)  molecular based magnets
分子基磁体
1.
A family of new molecular based magnets[NO 2BzQl][FeRu xFe (1-x) (ox) 3] are synthesized and their magnetic susceptibility are measured.
合成了组成不同的一类新的层状分子基磁体 [NO2 BzQl][FeRuxFe( 1 x) (ox) 3 ],并测定了它们的变温磁化率 ,结果显示 ,磁体磁性随着RuⅢ/FeⅢ 比例的不同而发生变化。
4)  molecular-based ferromagnets
分子基铁磁体
1.
A brief introduction to the main facets of the field is presented,and several recent topics,including intramolecular magnetic coupling and molecular magnetic engineering,molecular-based ferromagnets,single-molecular magnets,spin-transition complexes and magnetic coupling in biological systems,are briefly reviewed.
文章简要介绍了该学科的主要研究内容,并对近年来发展最快的几个研究热点,即分子内磁耦合作用与分子磁工程、分子基铁磁体、单分子磁体、自旋转换配合物和生物体系内磁耦合作用,作一简要评述和展望。
5)  radical molecule-based magnets
自由基分子基磁体
6)  Molecular magnet
分子磁体
1.
Synthesis and characterization of molecular magnet constructed from _3 and ClO_4;
以[NEt_4]_3[Fe(CN)_6]和[Mn(Ⅲ)(SB)S_1S_2]ClO_4为单元的分子磁体的合成和表征
2.
Quantum tunneling and macroscopic quantum effects in molecular magnets;
分子磁体中的量子隧穿及宏观量子效应
3.
First-principle Studies the Property of the Diluted Magnetic Semiconductors Doped with Ca、Ti、C and the Binuclear Manganese Molecular Magnet
钙、钛和碳掺杂的稀磁半导体及双核锰分子磁体性质的研究
补充资料:实验室高场超导磁体——15.5T磁体(1985)


实验室高场超导磁体——15.5T磁体(1985)


实验室高场超导磁体一f 5 5T磁体 r1 9851
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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