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1)  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
2)  Molecular magnets
分子磁体
1.
In this paper,the basic principle,main research aspects and current development of molecular magnets will be briefly addressed.
分子磁体有着与传统块材磁体不同的特性和用途。
3)  molecule-based magnet
分子磁体
1.
Multicyanometalate is a sort of tunable molecular precursor in the field of molecular magnetism, and can be used to build molecule-based magnets with high Curie temperatures and magnetic molecules with high spin ground state.
分子磁体的研制中,多氰金属盐是一类非常合适的分子前体。
4)  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。
5)  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。
6)  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。
补充资料:铸造磁体
分子式:
CAS号:

性质:经真空感应炉熔炼成的永磁合金浇注成锭,再经1000℃下退火,得到各向同性的铸造磁体。其性能:Br=0.66T,mHc=598kA/m,(B·H)m=70.0kJ/m3。若把铸锭在1000℃氩气下热压,得各向异性的铸造(变形)的永磁体,性能为:Br=1.25T,mHc=796kA/m,(B·H)=288.1kJ/m3。铸造磁体工艺简单,成本低,已能达到同类型的烧结磁体的性能。

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