1) charge-ordering
电荷有序化
2) charge order
电荷有序
1.
Meanwhile,spin glass,charge ordering and metal-insulator transition were suppressed by Fe 3+ addition.
同时,LaSr2Mn2-xFexO7的自旋玻璃态、电荷有序和金属-绝缘体转变温度都由于Fe3+取代Mn离子而受到抑制。
3) Charge ordering
电荷有序
1.
Reentering spin glass behavior and charge ordering in phase separation Nd_(0·5)Ca_(0·5)MnO_3 system;
相分离Nd_(0·5)Ca_(0·5)MnO_3体系的再入型自旋玻璃行为和电荷有序
2.
Grain size effect of charge ordering of Bi_(0.2)Ca_(0.8)MnO_3
晶粒尺寸对Bi_(0.2)Ca_(0.8)MnO_3电荷有序的影响
3.
7MnO3 charge ordering phase and the changing process of magnetic properties were studied through the measurement of M-T curve, M-H curves and ESR curves of the sample.
7MnO3电荷有序相的影响以及磁结构的变化过程。
4) charge ordering
电荷有序态
1.
A charge ordering transition was observed in all samples through resistivity and magnetization measurements.
随着钠掺杂量的增加,电荷有序相变温度(TCO)向低温移动同时低温端磁化强度增大,并且电荷有序态趋向于不稳定和短程化。
2.
Many related physical phenomena such as high temperature superconductivity, CMR effect, metal-insulator transition, charge ordering, and phase separation have been found in these compounds.
近年来,钙钛矿型铁氧化物La_(1-x)Sr_xFeO_3以其复杂的电荷有序态和奇特的电荷不均匀现象而引起了人们的广泛关注。
5) OO/CO
电荷/轨道有序
1.
In low temperature,without long magnetism order,and OO/CO buildup.
8Mn2O7中,Nd部分取代La后,改变了晶格常数,引起了eg电子轨道占据态的变化,这都使得该样品中在低温下没有长程的磁有序,短程的电荷/轨道有序得以增强。
6) charge order
电荷序
补充资料:电荷交换离子化
分子式:
CAS号:
性质:通过电荷交换反应使试样分子离子化的过程。如在化学电离源内,反应气R先被电子电离化为离子R+,它与试样分子M发生电荷交换而使其离子化: R++M→R+M+
CAS号:
性质:通过电荷交换反应使试样分子离子化的过程。如在化学电离源内,反应气R先被电子电离化为离子R+,它与试样分子M发生电荷交换而使其离子化: R++M→R+M+
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条