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相关概念视频

Hydrogen Bonds01:04

Hydrogen Bonds

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A hydrogen bond is formed when a weakly positive hydrogen atom already bonded to one electronegative atom (for example, the oxygen in the water molecule) is attracted to another electronegative atom from another polar molecule, such as water (H2O), hydrogen fluoride (HF), or ammonia (NH3). The huge electronegativity difference between the H atom (2.1) and the atom to which it is bonded (4.0 for an F atom, 3.5 for an O atom, or 3.0 for an N atom), combined with the very small size of an H atom...
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Radical Substitution: Hydrogenolysis of Alkyl Halides with Tributyltin Hydride01:26

Radical Substitution: Hydrogenolysis of Alkyl Halides with Tributyltin Hydride

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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...
1.8K
Electrolysis03:00

Electrolysis

26.4K
In a galvanic cell, the electrical work is done by a redox system on its surroundings as electrons produced by the spontaneous redox reactions are transferred through an external circuit. Alternatively, an external circuit does work on a redox system by imposing a voltage sufficient to drive an otherwise nonspontaneous reaction in a process known as electrolysis. For instance, recharging a battery involves the use of an external power source to drive the spontaneous (discharge) cell reaction in...
26.4K
Hydroboration-Oxidation of Alkenes03:08

Hydroboration-Oxidation of Alkenes

8.2K
In addition to the oxymercuration–demercuration method, which converts the alkenes to alcohols with Markovnikov orientation, a complementary hydroboration-oxidation method yields the anti-Markovnikov product. The hydroboration reaction, discovered in 1959 by H.C. Brown, involves the addition of a B–H bond of borane to an alkene giving an organoborane intermediate. The oxidation of this intermediate with basic hydrogen peroxide forms an alcohol.
8.2K
Radical Formation: Homolysis00:54

Radical Formation: Homolysis

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A bond is formed between two atoms by sharing two electrons. When this bond is broken by supplying sufficient energy, either two electrons can be taken up by one atom forming ions by the cleavage called heterolysis, or the two electrons are shared by two atoms, with one each creating radicals by the cleavage called homolysis.
3.6K
Hybridization of Atomic Orbitals I03:24

Hybridization of Atomic Orbitals I

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The mathematical expression known as the wave function, ψ, contains information about each orbital and the wavelike properties of electrons in an isolated atom. When atoms are bound together in a molecule, the wave functions combine to produce new mathematical descriptions that have different shapes. This process of combining the wave functions for atomic orbitals is called hybridization and is mathematically accomplished by the linear combination of atomic orbitals. The new orbitals that...
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Updated: Jul 4, 2025

A Simple, Low-cost, and Robust System to Measure the Volume of Hydrogen Evolved by Chemical Reactions with Aqueous Solutions
06:32

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从化板中电解释放的.

Satoshi Kawamura1, Akira Yamaguchi1, Keisuke Miyazaki1

  • 1Department of Materials Science and Engineering, School of Materials and Chemical Technology, Tokyo Institute of Technology, Meguro-ku, Tokyo, 152-8552, Japan.

Small (Weinheim an der Bergstrasse, Germany)
|February 1, 2024
PubMed
概括

从化 (HB) 板中释放电化学,是使用阴极电位实现的. 这种方法提供了一种安全,轻量化和经济的释放的方法,效率达到90%以上.

关键词:
化物化物化物化物释放的释放的释放.储存的储存的储存.一个纳米板.

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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
  • 储存气的储存方式

背景情况:

  • 固态存材料提供安全和轻量化的替代品.
  • 化 (HB) 板具有较高的重力度容量 (8.5 wt%).
  • 目前从HB片中释放的方法需要高温或紫外线照明.

研究的目的:

  • 调查HB片中的电化学释放情况.
  • 在分散系统中探索HB板作为载体.
  • 确定电化学释放的效率和潜力.

主要方法:

  • 使用HB片在有机溶剂中的分散系统.
  • 电化学释放的应用阴极潜力.
  • 使用电化学技术测量释放的.

主要成果:

  • 在正极电位下从HB板中实现电化学H2释放.
  • 已证明H2释放的法拉第克效率>90%.
  • 观察到 -0.445 V 与 Ag/Ag+ 的发作潜力,与其他质子源相比,这是有利的.
  • 在延长的实验中达到理论能容量的约100%.

结论:

  • 从HB片中释放电化学H2是可行的和高效的.
  • HB板可以作为安全,轻量级和经济的载体.
  • 释放H2所需的低偏差提高了实际适用性.