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相关概念视频

Ferromagnetism01:31

Ferromagnetism

2.8K
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...
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Ferrocement01:30

Ferrocement

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Ferro-cement is a distinctive construction material that represents an innovative variant of reinforced concrete, characterized by its unique composition and the method by which it is formed. Unlike standard reinforced concrete, which relies on larger steel bars for reinforcement, ferro-cement utilizes densely packed layers of mesh or fine rods, fully encased in cement mortar. This composition allows for the creation of structures that are significantly thinner and more flexible than their...
562
Interfacial Electrochemical Methods: Overview01:06

Interfacial Electrochemical Methods: Overview

688
Interfacial electrochemical methods focus on the phenomena occurring at the boundary between an electrode and a solution, as opposed to bulk methods that concentrate on the solution's overall properties. These interfacial methods are classified as either static or dynamic based on the presence of a nonzero current in the electrochemical cell and the consistency of analyte concentrations. Static methods, such as potentiometry, measure the cell's potential without any significant current...
688
Electrochemistry: Overview01:04

Electrochemistry: Overview

3.2K
Electrochemistry is the branch of chemistry that studies the relationship between electrical quantities and chemical reactions, particularly oxidation and reduction. Oxidation is the loss of electrons from a substance, whereas reduction refers to the gain of electrons. A substance with a strong electron affinity is called an oxidizing agent (oxidant), and a reducing agent (reductant) is a species that donates electrons. Oxidation and reduction processes are pivotal to electrochemical reactions,...
3.2K

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相关实验视频

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Measuring Magnetically-Tuned Ferroelectric Polarization in Liquid Crystals
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Measuring Magnetically-Tuned Ferroelectric Polarization in Liquid Crystals

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铁电学分子设计原理:铁电化学

Hui-Yu Liu1, Han-Yue Zhang1, Xiao-Gang Chen1

  • 1Jiangsu Key Laboratory for Science and Applications of Molecular Ferroelectrics, Southeast University, Nanjing 211189, People's Republic of China.

Journal of the American Chemical Society
|August 19, 2020
PubMed
概括

分子铁电的发现受到化学设计挑战的限制. 准球体理论,同质性和H/F替代等新策略使先进铁电材料的定向设计成为可能.

科学领域:

  • 材料科学
  • 化学学
  • 物理

背景情况:

  • 分子铁电为传感器和传感器等应用提供结构灵活性和可调性.
  • 这些有限的发现凸显了分子铁电中改进化学设计策略的必要性.

研究的目的:

  • 提供关于分子铁电的基本化学和物理的见解.
  • 提出和探索"铁电化学"以针对分子铁电设计和优化.

主要方法:

  • 使用准球形理论进行化学结构修改.
  • 研究同质性在铁电设计中的优势.
  • 探索/ (H/F) 替代作为一个设计策略.

主要成果:

  • 进步的方法已经将铁电发现从盲目的搜索转变为有针对性的化学设计.
  • 在不改变极点组的情况下,H/F替代可以增强铁电性质,如库里温度和自发偏振.

结论:

  • "铁电化学"的发展为设计和优化分子铁电提供了一个化学视角.
  • 针对性的设计策略对于推进分子铁电领域至关重要.

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