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関連する概念動画

Batteries and Fuel Cells03:12

Batteries and Fuel Cells

30.8K
A battery is a galvanic cell that is used as a source of electrical power for specific applications. Modern batteries exist in a multitude of forms to accommodate various applications, from tiny button batteries such as those that power wristwatches to the very large batteries used to supply backup energy to municipal power grids. Some batteries are designed for single-use applications and cannot be recharged (primary cells), while others are based on conveniently reversible cell reactions that...
30.8K
Lung Capacity01:47

Lung Capacity

56.2K
The air in the lungs is measured in volumes and capacities. Lung volume measures reflect the amount of air taken in, released, or left over after a lung function, like a single inhalation. Lung capacity measures are sums of two or more lung volume measures.
56.2K
Common Ion Effect03:24

Common Ion Effect

46.0K
Compared with pure water, the solubility of an ionic compound is less in aqueous solutions containing a common ion (one also produced by dissolution of the ionic compound). This is an example of a phenomenon known as the common ion effect, which is a consequence of the law of mass action that may be explained using Le Châtelier’s principle. Consider the dissolution of silver iodide:
46.0K
Precipitation of Ions03:11

Precipitation of Ions

30.0K
Predicting Precipitation
The equation that describes the equilibrium between solid calcium carbonate and its solvated ions is:
30.0K
Ions as Acids and Bases02:54

Ions as Acids and Bases

26.2K
Salts with Acidic Ions
Salts are ionic compounds composed of cations and anions, either of which may be capable of undergoing an acid or base ionization reaction with water. Aqueous salt solutions, therefore, may be acidic, basic, or neutral, depending on the relative acid-base strengths of the salt’s constituent ions. For example, dissolving the ammonium chloride in water results in its dissociation, as described by the equation:
26.2K
Formation of Complex Ions03:45

Formation of Complex Ions

25.8K
A type of Lewis acid-base chemistry involves the formation of a complex ion (or a coordination complex) comprising a central atom, typically a transition metal cation, surrounded by ions or molecules called ligands. These ligands can be neutral molecules like H2O or NH3, or ions such as CN− or OH−. Often, the ligands act as Lewis bases, donating a pair of electrons to the central atom. These types of Lewis acid-base reactions are examples of a broad subdiscipline called coordination...
25.8K

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関連する実験動画

Updated: Jan 23, 2026

Characterization of Electrode Materials for Lithium Ion and Sodium Ion Batteries Using Synchrotron Radiation Techniques
10:03

Characterization of Electrode Materials for Lithium Ion and Sodium Ion Batteries Using Synchrotron Radiation Techniques

Published on: November 11, 2013

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O3型層状酸化物カソードの容量をRb変調で解き放つ:先進ナトリウムイオン電池に向けて

Jian Qiu1, Pengzhi Li1, Miaomiao Jiang2

  • 1School of Materials and Chemistry, University of Shanghai for Science and Technology, Shanghai 200093, China.

ACS nano
|January 21, 2026
PubMed
まとめ

少量のルビジウム(Rb)をO3型ナトリウムニッケルマンガン酸化物(NaNM)層状酸化物に添加すると、比容量とサイクル安定性が大幅に向上します。この最適化は、高性能ナトリウムイオン電池の開発に不可欠です。

背景:

  • O3型層状酸化物は、ナトリウムイオン電池の有望なカソード材料です。
  • 相転移と遅いイオン拡散が、それらの実用的な性能を制限しています。
  • 材料構造の最適化は、電池の容量と安定性を高めるために不可欠です。

結論:

  • Rb変調は、O3型層状酸化物の限界を克服するための効果的な戦略です。
  • このアプローチは、サイクル安定性と比容量を大幅に向上させ、高性能ナトリウムイオン電池への道を開きます。
キーワード:
O3型NaNi0.5Mn0.5O2層状酸化物カソードルビジウム変調ナトリウムイオン電池構造改変

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Preparation of Graphene Liquid Cells for the Observation of Lithium-ion Battery Material
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Preparation of Graphene Liquid Cells for the Observation of Lithium-ion Battery Material

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Three-electrode Coin Cell Preparation and Electrodeposition Analytics for Lithium-ion Batteries
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Three-electrode Coin Cell Preparation and Electrodeposition Analytics for Lithium-ion Batteries

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関連する実験動画

Last Updated: Jan 23, 2026

Characterization of Electrode Materials for Lithium Ion and Sodium Ion Batteries Using Synchrotron Radiation Techniques
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Preparation of Graphene Liquid Cells for the Observation of Lithium-ion Battery Material
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Preparation of Graphene Liquid Cells for the Observation of Lithium-ion Battery Material

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Three-electrode Coin Cell Preparation and Electrodeposition Analytics for Lithium-ion Batteries
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Three-electrode Coin Cell Preparation and Electrodeposition Analytics for Lithium-ion Batteries

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  • この発見は、高度なエネルギー貯蔵材料のための標的元素ドーピングの可能性を強調しています。