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相关概念视频

Valence Bond Theory02:45

Valence Bond Theory

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Overview of Valence Bond Theory
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Valence Bond Theory02:42

Valence Bond Theory

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Coordination compounds and complexes exhibit different colors, geometries, and magnetic behavior, depending on the metal atom/ion and ligands from which they are composed. In an attempt to explain the bonding and structure of coordination complexes, Linus Pauling proposed the valence bond theory, or VBT, using the concepts of hybridization and the overlapping of the atomic orbitals. According to VBT, the central metal atom or ion (Lewis acid) hybridizes to provide empty orbitals of suitable...
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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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The Evidence for Evolution02:55

The Evidence for Evolution

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Genetic variations accumulating within populations over generations give rise to biological evolution. Evolutionary changes can result in the formation of novel varieties and entire new species. These changes are responsible for the diverse forms of life inhabiting the planet. The evidence for evolution suggests that all living organisms descended from common ancestors.
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Hybridization of Atomic Orbitals II03:35

Hybridization of Atomic Orbitals II

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sp3d and sp3d 2 Hybridization
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Atomic Radii and Effective Nuclear Charge03:08

Atomic Radii and Effective Nuclear Charge

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The elements in groups of the periodic table exhibit similar chemical behavior. This similarity occurs because the members of a group have the same number and distribution of electrons in their valence shells.
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相关实验视频

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U2O5 Film Preparation via UO2 Deposition by Direct Current Sputtering and Successive Oxidation and Reduction with Atomic Oxygen and Atomic Hydrogen
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高价值的Ir单个原子增强氧的进化电催化剂电催化剂.

Runxin Li1, Yangyang Dong1, Heng Xu2

  • 1College of Chemistry and Materials Engineering, Wenzhou University, Wenzhou, 325035, China. jiexu@wzu.edu.cn.

Nanoscale
|January 20, 2026
PubMed
概括

合成稳定的高价值单原子催化剂是一项挑战. 这项研究开发了一种方法,可以在硫化矩阵上稳定单个原子,从而实现出色的氧化演化反应 (OER) 性能.

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
  • 催化剂是一种催化剂.

背景情况:

  • 高价金属单个原子提供优越的电催化活性,由于快速的电子转移.
  • 合成这些催化剂很困难,因为它们在标准制备条件下是不稳定的.

研究的目的:

  • 为合成稳定的高价值单原子催化剂制定强有力的战略.
  • 为了研究氧化演化反应 (OER) 的NiS2矩阵上原子分散的Ir3+单个原子的电催化性能.

主要方法:

  • 原子分散的Ir3+单个原子通过将NiS2中的Ni位替换为Ir来合成.
  • 与相邻的硫原子的协调使Ir物种稳定.
  • 用密度函数理论 (DFT) 的计算来理解电子结构和催化机制.

主要成果:

  • 合成的催化剂表现出卓越的OER性能,达到10mAcm-2的电流密度,在190mV的低超电位下.
  • DFT计算表明,Ir的高氧化状态会移动Ni d带中心,增强OOH*吸附和加速OER动力学.
  • 硫化NiS2的支持在稳定的高氧化状态方面被证明是有效的.

结论:

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  • 建立了一种可靠的方法来构建稳定的高价值单原子催化剂.
  • 该研究强调了硫化物支在稳定高级电催化剂高氧化状态方面的关键作用.
  • 开发的催化剂显示出有效的氧气演化反应的巨大潜力.