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相关概念视频

Radical Substitution: Hydrogenolysis of Alkyl Halides with Tributyltin Hydride01:26

Radical Substitution: Hydrogenolysis of Alkyl Halides with Tributyltin Hydride

1.8K
Radical substitution reactions can be used to remove functional groups from molecules. The hydrogenolysis of alkyl halides is one such reaction, where the weak Sn–H bond in tributyltin hydride reacts with alkyl halides to form alkanes. Here, the reagent Bu3SnH yields tributyltin halide as a byproduct.
The bonds formed in this reaction are stronger than the bonds broken, making it energetically favorable. The reaction follows a radical chain mechanism similar to radical halogenation...
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Metallic Solids02:37

Metallic Solids

18.1K
Metallic solids such as crystals of copper, aluminum, and iron are formed by metal atoms. The structure of metallic crystals is often described as a uniform distribution of atomic nuclei within a “sea” of delocalized electrons. The atoms within such a metallic solid are held together by a unique force known as metallic bonding that gives rise to many useful and varied bulk properties.
All metallic solids exhibit high thermal and electrical conductivity, metallic luster, and malleability....
18.1K
Network Covalent Solids02:18

Network Covalent Solids

13.3K
Network covalent solids contain a three-dimensional network of covalently bonded atoms as found in the crystal structures of nonmetals like diamond, graphite, silicon, and some covalent compounds, such as silicon dioxide (sand) and silicon carbide (carborundum, the abrasive on sandpaper). Many minerals have networks of covalent bonds.
To break or to melt a covalent network solid, covalent bonds must be broken. Because covalent bonds are relatively strong, covalent network solids are typically...
13.3K

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相关实验视频

Updated: May 24, 2025

Supercritical Nitrogen Processing for the Purification of Reactive Porous Materials
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基于V-Ti的固体溶液合金用于固态储存.

Shaoyang Shen1, Yongan Li1, Liuzhang Ouyang2

  • 1School of Materials Science and Engineering and Key Laboratory of Advanced Energy Storage Materials of Guangdong Province, South China University of Technology, Guangzhou, 510641, People's Republic of China.

Nano-micro letters
|March 4, 2025
PubMed
概括

- (V-Ti) 基合金作为燃料电池的储存材料具有前景,在环境条件下提供高容量. 需要进一步开发具有成本效益的,耐用的合金用于金属化物.

关键词:
周期性稳定性 周期性稳定性储存气的储存方式的储存特性 的储存特性金属化物储中的金属化物.基于VTi的固溶液合金.

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In Situ High Pressure Hydrogen Tribological Testing of Common Polymer Materials Used in the Hydrogen Delivery Infrastructure

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Last Updated: May 24, 2025

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科学领域:

  • 材料科学 材料科学 材料科学
  • 电化学 电化学 电化学
  • 化学工程是化学工程的重要组成部分.

背景情况:

  • 金属化物 (MH) 对于燃料电池应用中的储存至关重要.
  • 基于V-Ti的合金正在研究它们在MH水箱中的潜力,因为它们具有很高的可逆储能能力.
  • 对于实际的供应系统来说,环境温度和压力操作是理想的.

研究的目的:

  • 审查基于V-Ti的存材料的进展.
  • 讨论准备方法,结构特征和性能提升策略.
  • 探索合金特性与 MH 应用中的组合/相结构之间的关系.

主要方法:

  • 对基于V-Ti的合金的文献进行系统审查.
  • 对制备技术和结构特征的分析.
  • 讨论绩效改进策略和退化机制.

主要成果:

  • 基于V-Ti的固体溶液合金在环境温度下具有很高的可逆储能能力 (>2重%) .
  • 影响储能性能的关键因素包括合金组成和相位结构.
  • 了解衰减机制对于材料的长期稳定性至关重要.

结论:

  • 基于V-Ti的合金对MH水箱来说是有前途的,提供了显著的储能容量.
  • 进一步的研究应该集中在开发低成本,高性能合金,增强周期性耐用性和激活性.
  • 合金组成和结构的优化对于大规模的MH应用至关重要.