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相关概念视频

Heterogeneous Catalysis01:22

Heterogeneous Catalysis

41
Heterogeneous catalysis involves a catalyst in a different phase from the reactants. It is a process where the catalyst and the reactants are in distinct phases, typically solid and gas or liquid.Most heterogeneous catalysts are metals, metal oxides, or acids. The list includes transition metals like iron (Fe), cobalt (Co), nickel (Ni), palladium (Pd), platinum (Pt), chromium (Cr), manganese (Mn), tungsten (W), silver (Ag), and copper (Cu). These metals possess partially vacant d orbitals that...
41
Oxidation of Alkenes: Syn Dihydroxylation with Osmium Tetraoxide02:44

Oxidation of Alkenes: Syn Dihydroxylation with Osmium Tetraoxide

13.2K
Alkenes are converted to 1,2-diols or glycols through a process called dihydroxylation. It involves the addition of two hydroxyl groups across the double bond with two different stereochemical approaches, namely anti and syn. Dihydroxylation using osmium tetroxide progresses with syn stereochemistry.
13.2K
Properties of Transition Metals02:58

Properties of Transition Metals

30.4K
Transition metals are defined as those elements that have partially filled d orbitals. As shown in Figure 1, the d-block elements in groups 3–12 are transition elements. The f-block elements, also called inner transition metals (the lanthanides and actinides), also meet this criterion because the d orbital is partially occupied before the f orbitals.
30.4K
Reduction of Alkenes: Asymmetric Catalytic Hydrogenation02:17

Reduction of Alkenes: Asymmetric Catalytic Hydrogenation

4.0K
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...
4.0K
Oxidation-Reduction Reactions03:11

Oxidation-Reduction Reactions

76.4K
Oxidation–Reduction Reactions
76.4K
Oxidation of Alcohols02:37

Oxidation of Alcohols

17.2K
In this lesson, the oxidation of alcohols is discussed in depth. The various reagents used for oxidation of primary and secondary alcohols are detailed, and their mechanism of action is provided.
The process of oxidation in a chemical reaction is observed in any of the three forms:
17.2K

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Development of Heterogeneous Enantioselective Catalysts using Chiral Metal-Organic Frameworks MOFs
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由第一排过渡金属复合体催化的不对称均氧化反应.

Geeta Devi Yadav1,2, Deepa Uppal1, Priyanka Jhajharia3

  • 1Department of Chemistry, University of Delhi, New Delhi, India.

Chirality
|March 5, 2026
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概括

本综述总结了使用第一排过渡金属复合物的不对称均氧化反应. 它强调了性催化剂的性能,专注于配体,金属和反应条件,以实现高效的氧化催化.

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科学领域:

  • 催化剂是一种催化剂.
  • 有机化学 有机化学
  • 材料科学 材料科学 材料科学

背景情况:

  • 不对称的同质氧化反应对于合成性分子至关重要.
  • 第一排过渡金属复合体提供了具有成本效益和可持续的催化解决方案.
  • 了解催化剂性能需要分析关键因素,如联结体结构和反应条件.

研究的目的:

  • 审查由第一排过渡金属复合体催化的不对称均氧化反应.
  • 分析性催化剂性能与关键因素之间的关系.
  • 提供对同质非对称氧化催化剂的全面概述.

主要方法:

  • 对不对称的同质氧化反应的文献综述.
  • 专注于涉及第一排过渡金属和奇拉连接体的催化系统.
  • 对各种氧化剂的分析,包括过氧化,分子氧和三甲基过氧化.

主要成果:

  • 复合物广泛用于环氧化,氧化和氧化动力学分辨率.
  • 采用各种第一排过渡金属 (Ti,Cr,Mn,Fe,Co,V) 和奇拉连接体.
  • 实现了各种氧化反应,包括环氧化,硫氧化和氧化.

结论:

  • 第一排过渡金属复合物是不对称氧化过程中有效的同质催化剂.
  • 的配体设计和反应参数显著影响催化剂性能.
  • 本综述增强了对同质非对称氧化催化剂的理解.