一种具有高电化学稳定性的新型离子导电电解质
Chibueze V Amanchukwu, Zhiao Yu, Xian Kong
1Stanford Institute for Materials and Energy Sciences, SLAC National Accelerator Laboratory, Menlo Park, California 94025, United States.
Journal of the American Chemical Society
|April 3, 2020
概括
研究人员开发了新的化电解质,为先进的电池提供高离子导电性和出色的电化学稳定性. 这一突破使电动汽车和便携式电子产品等应用中能实现更高的能量密度.
科学领域:
- 电化学
- 材料科学
- 能量储存
背景情况:
- 下一代电池需要更高的能量密度,通常受到电解质的限制,电化学稳定性较差或离子导电性较低.
- 以乙烯为基础的电解质具有高导电性,但在4V以上不稳定,而乙烯 (HFEs) 则稳定,但不能溶解盐.
研究的目的:
- 合成一类新的化电解质, 结合高氧化稳定性和离子导电性.
- 研究离子电池中的这些新型电解质的特性和性能.
主要方法:
- 新型化化合物的合成.
- 电化学表征包括导电性和氧化稳定性测量.
- 核磁共振 (NMR) 和分子动力学 (MD) 用于研究离子传输和溶解.
- 电池循环测试使用富含的层状阴极 (NMC 811).
主要成果:
- 在30°C时达到高达2.7×10−4 S/cm的离子导电性.
- 已证明高氧化稳定性高达5.6V.
- 与传统相比,观察到更高的转移数.
- 通过NMC 811阴极在C/5速率下成功循环超过100次.
结论:
- 新型化电解质成功地结合了高离子导电性和电化学稳定性.
- 这些电解质是设计下一代高能量密度电池的有希望的进步.
- 理性分子设计方法为未来的电解质发展提供了途径.
相关概念视频
Crown Ethers
5.9K
Crown ethers are cyclic polyethers that contain multiple oxygen atoms, usually arranged in a regular pattern. The first crown ether was synthesized by Charles Pederson while working at DuPont in 1967. For this work, Pedersen was co-awarded the 1987 Nobel Prize in Chemistry. Crown ethers are named using the formula x-crown-y, where x is the total number of atoms in the ring and y is the number of ether oxygen atoms. The term 'crown' refers to the crown-like shape that these ether molecules...
5.9K
Molecular Shape and Polarity
72.8K
Dipole Moment of a Molecule
72.8K
Electrolyte and Nonelectrolyte Solutions
70.6K
Substances that undergo either a physical or a chemical change in solution to yield ions that can conduct electricity are called electrolytes. If a substance yields ions in solution, that is, if the compound undergoes 100% dissociation, then the substance is a strong electrolyte. Complete dissociation is indicated by a single forward arrow. For example, water-soluble ionic compounds like sodium chloride dissociate into sodium cations and chloride anions in aqueous solution.
70.6K
Ion Exchange
1.1K
Ion exchange chromatography separates charged molecules from a solution by reversibly exchanging them with mobile, or 'active', ions associated with the oppositely charged stationary phase. This method can be used to separate ions, soften and deionize water, and purify solutions. The polymers comprising the ion-exchange column are high-molecular-weight and chemically stable polymers, crosslinked to be porous and essentially insoluble. They are also functionalized with either acidic or...
1.1K
Ionic Bonding and Electron Transfer
48.3K
Ions are atoms or molecules bearing an electrical charge. A cation (a positive ion) forms when a neutral atom loses one or more electrons from its valence shell, and an anion (a negative ion) forms when a neutral atom gains one or more electrons in its valence shell. Compounds composed of ions are called ionic compounds (or salts), and their constituent ions are held together by ionic bonds: electrostatic forces of attraction between oppositely charged cations and anions.
48.3K
Electrophilic Aromatic Substitution: Fluorination and Iodination of Benzene
7.2K
Bromination and chlorination of aromatic rings by electrophilic aromatic substitution reactions are easily achieved, but fluorination and iodination are difficult to achieve. Fluorine is so reactive that its reaction with benzene is difficult to control, resulting in poor yields of monofluoroaromatic products. To address this, Selectfluor reagent is used as a fluorine source in which a fluorine atom is bonded to a positively charged nitrogen.
7.2K


