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相关概念视频

Oxidation-Reduction Reactions03:11

Oxidation-Reduction Reactions

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Oxidation–Reduction Reactions
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Reduction of Alkenes: Asymmetric Catalytic Hydrogenation02:17

Reduction of Alkenes: Asymmetric Catalytic Hydrogenation

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Catalytic hydrogenation of alkenes is a transition-metal catalyzed reduction of the double bond using molecular hydrogen to give alkanes. The mode of hydrogen addition follows syn stereochemistry.
The metal catalyst used can be either heterogeneous or homogeneous. When hydrogenation of an alkene generates a chiral center, a pair of enantiomeric products is expected to form. However, an enantiomeric excess of one of the products can be facilitated using an enantioselective reaction or an...
3.9K
Phase I Reactions: Reductive Reactions01:27

Phase I Reactions: Reductive Reactions

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Phase I biotransformation reductive reactions are chemical processes that modify drugs by introducing or revealing polar functional groups via reduction. Enzymes called reductases catalyze these reactions, playing a pivotal role in drug metabolism by transforming lipophilic drugs into more polar, water-soluble metabolites for easy excretion. An essential type of reductive reaction is the carbonyl group reduction, where aldehydes and ketones are reduced to alcohols. An example is the...
608
Lattice Centering and Coordination Number02:33

Lattice Centering and Coordination Number

11.7K
The structure of a crystalline solid, whether a metal or not, is best described by considering its simplest repeating unit, which is referred to as its unit cell. The unit cell consists of lattice points that represent the locations of atoms or ions. The entire structure then consists of this unit cell repeating in three dimensions. The three different types of unit cells present in the cubic lattice are illustrated in Figure 1.
Types of Unit Cells
Imagine taking a large number of identical...
11.7K
Coordination Compounds and Nomenclature02:54

Coordination Compounds and Nomenclature

26.9K
In most main group element compounds, the valence electrons of the isolated atoms combine to form chemical bonds that satisfy the octet rule. For instance, the four valence electrons of carbon overlap with electrons from four hydrogen atoms to form CH4. The one valence electron leaves sodium and adds to the seven valence electrons of chlorine to form the ionic formula unit NaCl (Figure 1a). Transition metals do not normally bond in this fashion. They primarily form coordinate covalent bonds, a...
26.9K
Reactions at the Benzylic Position: Oxidation and Reduction00:59

Reactions at the Benzylic Position: Oxidation and Reduction

5.1K
The benzylic position describes the position of a carbon atom attached directly to a benzene ring. Benzene by itself does not undergo oxidation. In contrast, the benzylic carbon is quite reactive in the presence of strong oxidizing agents such as KMnO4 or H2CrO4. Therefore, alkylbenzenes are readily oxidized to benzoic acid, irrespective of the type of alkyl groups.
5.1K

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相关实验视频

Updated: Feb 10, 2026

Synthesis and Performance Characterizations of Transition Metal Single Atom Catalyst for Electrochemical CO2 Reduction
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Synthesis and Performance Characterizations of Transition Metal Single Atom Catalyst for Electrochemical CO2 Reduction

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不对称地协调的单原子Co-N3S/C催化剂用于氧降解反应.

Yuzhou Tao1,2, Yang Yu1,2, Lingya Yi1,2

  • 1School of Materials & Energy, Southwest University, Chongqing 400715, P. R. China. whhu@swu.edu.cn.

Chemical communications (Cambridge, England)
|February 9, 2026
PubMed
概括

研究人员开发了一种具有不对称协调的新型--硫单原子催化剂 (Co-N3S/C). 这种催化剂在空气电池中的氧降解反应中表现出色.

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:

  • 优化单原子催化剂 (SAC) 对于先进的电催化非常重要.
  • 控制SAC中的金属中心的协调环境是一个重大挑战.
  • 氧降解反应 (ORR) 对空气电池等能量转换装置至关重要.

研究的目的:

  • 开发一种新的单原子催化剂,具有量身定制的不对称协调.
  • 为了研究新催化剂在氧降解反应中的性能.
  • 为了评估其在空气电池系统中的有效性.

主要方法:

  • 在催化剂合成中采用了协调性化合物浸策略.
  • 合成的催化剂是一个由碳 (Co-N3S/C) 支持的--硫单原子催化剂.
  • 测试了电化学性能,特别关注空气电池中的氧减少反应 (ORR).

主要成果:

  • 合成的Co-N3S/C催化剂在原子周围表现出不对称的协调.
  • 催化剂在氧降解反应中表现出色.
  • 当催化剂在空气电池中使用时,观察到更高的性能.

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Synthesis of Platinum-nickel Nanowires and Optimization for Oxygen Reduction Performance
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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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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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Synthesis of Platinum-nickel Nanowires and Optimization for Oxygen Reduction Performance
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Synthesis of Platinum-nickel Nanowires and Optimization for Oxygen Reduction Performance

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结论:

  • 建立了一个成功的策略来定制单原子催化剂的协调结构.
  • 具有不对称协调的Co-N3S/C催化剂对电催化应用有很大的希望.
  • 这项工作突出了精确控制协调环境的潜力,以提高电池性能.