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相关概念视频

Ferromagnetism01:31

Ferromagnetism

Materials like iron, nickel, and cobalt consist of magnetic domains, within which the magnetic dipoles are arranged parallel to each other. The magnetic dipoles are rigidly aligned in the same direction within a domain by quantum mechanical coupling among the atoms. This coupling is so strong that even thermal agitation at room temperature cannot break it. The result is that each domain has a net dipole moment. However, some materials have weaker coupling, and are ferromagnetic at lower...
Paramagnetism01:30

Paramagnetism

Paramagnets are materials with unpaired electrons that possess a finite magnetic moment. In the absence of a magnetic field, these moments are randomly oriented, and thus the net moment is zero. Under an external field, a torque acting on the moments tends to align them along the field's direction. However, the random thermal motion of electrons produces a torque opposite to the external field and tries to disorient the moments. These two competing effects align only a few moments along the...
Diamagnetism01:26

Diamagnetism

Materials consisting of paired electrons have zero net magnetic moments. However, when these materials are placed under an external magnetic field, the moments opposite to the field are induced. Such materials are called diamagnets. Diamagnetism is the response of the diamagnets when placed in an external magnetic field.
Diamagnetism was discovered by Anton Brugmans in 1778 when he observed that bismuth gets repelled by magnetic fields, thus theorizing that diamagnets get repelled by magnets.
Magnetism01:30

Magnetism

Magnets are commonly found in everyday objects, such as toys, hangers, elevators, doorbells, and computer devices. Experimentation on these magnets shows that all magnets have two poles: one is labeled north (N) and the other south (S). Magnetic poles repel if they are alike and attract if unlike. Moreover, both poles of a magnet attract unmagnetized pieces of iron.
An individual magnetic pole cannot be isolated. No matter how small, every piece of a magnet contains a north pole and a south...
Magnetic Susceptibility and Permeability01:31

Magnetic Susceptibility and Permeability

In linear magnetic materials, like paramagnets and diamagnets, magnetization is proportional to the magnetic field intensity. The constant of proportionality, a dimensionless number, is called magnetic susceptibility. The value of the susceptibility depends on the type of material.
When diamagnetic materials are placed under an external magnetic field, the moments opposite to the field are induced. Hence, the susceptibility for diamagnets has a minimal negative value of 10-5–10-6. Since...
π Electron Effects on Chemical Shift: Overview01:27

π Electron Effects on Chemical Shift: Overview

An applied magnetic field causes loosely bound π-electrons in organic molecules to circulate, producing a local or induced diamagnetic field over a large spatial volume. As the molecules tumble in solution, the field generated by π-electrons in spherical substituents results in a zero net field. However, the net field generated by π-electrons in non-spherical substituents is not zero. The effect of this induced field depends on the orientation of the molecule with respect to B0, resulting in...

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相关实验视频

Updated: Jul 12, 2026

Chemical Vapor Deposition of an Organic Magnet, Vanadium Tetracyanoethylene
08:25

Chemical Vapor Deposition of an Organic Magnet, Vanadium Tetracyanoethylene

Published on: July 3, 2015

一个室温分子/有机基磁铁.

J M Manriquez, G T Yee, R S McLean

    Science (New York, N.Y.)
    |June 7, 1991
    PubMed
    概括

    一种新型的-四乙烯化合物表现出室温磁性歇斯底里. 这种铁磁材料具有铁磁性.

    科学领域:

    • 材料科学 材料科学 材料科学
    • 磁力学 磁力学 是一种
    • 无机化学 无机化学

    背景情况:

    • 乙 () 是一种已知的有机金属化合物.
    • 四乙烯 (TCNE) 是一个强大的电子受体.
    • 有机金属化合物可以表现出有趣的磁性.

    研究的目的:

    • 为了合成和表征一个新的磁性材料从 bis () 和TCNE.
    • 为了研究产生的固体的磁性,包括磁化和歇斯底里.
    • 为了确定新型化合物的组成和磁性合机制.

    主要方法:

    • 双 () 与四乙烯的反应.
    • 测量磁感应度的测量.
    • 红外光谱学.红外光谱学.

    主要成果:

    • 合成了一种具有实证组成的不溶性无形黑色固体V(TCNE) x.Y(CH(2) Cl(2)) (x≈2,Y≈1/2).
    • 该材料在室温下表现出取决于场的磁化和歇斯底里.
    • 临界温度超过350K,即样本的分解点.

    结论:

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    Magnetometric Characterization of Intermediates in the Solid-State Electrochemistry of Redox-Active Metal-Organic Frameworks
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    Magnetometric Characterization of Intermediates in the Solid-State Electrochemistry of Redox-Active Metal-Organic Frameworks

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    Chemical Vapor Deposition of an Organic Magnet, Vanadium Tetracyanoethylene
    08:25

    Chemical Vapor Deposition of an Organic Magnet, Vanadium Tetracyanoethylene

    Published on: July 3, 2015

    Use of Electron Paramagnetic Resonance in Biological Samples at Ambient Temperature and 77 K
    06:45

    Use of Electron Paramagnetic Resonance in Biological Samples at Ambient Temperature and 77 K

    Published on: January 11, 2019

    Magnetometric Characterization of Intermediates in the Solid-State Electrochemistry of Redox-Active Metal-Organic Frameworks
    06:53

    Magnetometric Characterization of Intermediates in the Solid-State Electrochemistry of Redox-Active Metal-Organic Frameworks

    Published on: June 9, 2023

    • 合成的-TCNE材料表现出铁磁性行为.
    • 作为磁性合机制,提出了供体和受体旋转之间的三维反铁磁交换.
    • 该材料的高临界温度表明其在磁性设备中的潜在应用.