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相关概念视频

Radical Oxidation of Allylic and Benzylic Alcohols01:21

Radical Oxidation of Allylic and Benzylic Alcohols

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Activated manganese(IV) oxide can selectively oxidize allylic and benzylic alcohols via a radical intermediate mechanism. Primary allylic alcohols are oxidized to aldehydes, while secondary allylic alcohols yield ketones. The redox reaction of potassium permanganate with an Mn(II) salt such as manganese sulfate (under either alkaline or acidic conditions), followed by thorough drying, yields the oxidizing agent: activated MnO2. While MnO2 is insoluble in the solvents used for the reaction, the...
2.2K
Oxidation of Alkenes: Syn Dihydroxylation with Potassium Permanganate02:21

Oxidation of Alkenes: Syn Dihydroxylation with Potassium Permanganate

15.6K
Alkenes can be dihydroxylated using potassium permanganate. The method encompasses the reaction of an alkene with a cold, dilute solution of potassium permanganate under basic conditions to form a cis-diol along with a brown precipitate of manganese dioxide.
15.6K
Microbes and Other Elemental Cycles01:24

Microbes and Other Elemental Cycles

89
Microbial activity plays a pivotal role in the biogeochemical cycling of iron and manganese, especially at the redox gradients characteristic of stratified aquatic environments. These cycles are driven by microbial transformations between oxidized and reduced forms of the metals, allowing organisms to exploit them for metabolic energy and structural purposes.Iron Cycling Across Redox GradientsIn neutral, oxygen-rich surface waters, iron is predominantly found in its oxidized, insoluble ferric...
89
Weak Acid Solutions04:02

Weak Acid Solutions

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Few compounds act as strong acids. A far greater number of compounds behave as weak acids and only partially react with water, leaving a large majority of dissolved molecules in their original form and generating a relatively small amount of hydronium ions. Weak acids are commonly encountered in nature, being the substances partly responsible for the tangy taste of citrus fruits, the stinging sensation of insect bites, and the unpleasant smells associated with body odor. A familiar example of a...
31.3K
Corrosion02:49

Corrosion

21.8K
The degradation of metals due to natural electrochemical processes is known as corrosion. Rust formation on iron, tarnishing of silver, and the blue-green patina that develops on copper are examples of corrosion. Corrosion involves the oxidation of metals. Sometimes it is protective, such as the oxidation of copper or aluminum, wherein a protective layer of metal oxide or its derivatives forms on the surface, protecting the underlying metal from further oxidation. In other cases, corrosion is...
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Oxidation-Reduction Reactions03:11

Oxidation-Reduction Reactions

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Oxidation–Reduction Reactions
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相关实验视频

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Preparation of Polyoxometalate-based Photo-responsive Membranes for the Photo-activation of Manganese Oxide Catalysts
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一个功能稳定的氧化氧化氧进化催化剂在酸中的酸.

Michael Huynh1, D Kwabena Bediako, Daniel G Nocera

  • 1Department of Chemistry and Chemical Biology, Harvard University , Cambridge, Massachusetts 02138, United States.

Journal of the American Chemical Society
|March 28, 2014
PubMed
概括

氧化 (MnOx) 通过自我修复作为稳定的氧化演化反应 (OER) 催化剂. 这一由MnOx重置驱动的过程使非贵金属催化剂能够在酸性条件下起作用.

科学领域:

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

背景情况:

  • 第一排金属对于开发具有成本效益的氧化演化反应 (OER) 催化剂至关重要.
  • 氧化 (MnOx) 是一个有前途的非贵金属催化剂候选者.

研究的目的:

  • 在广泛的pH范围内全面描述MnOx电化学.
  • 阐明MnOx.的OER机制和自我愈合特性.
  • 建立稳定的MnOx OER催化条件,包括在酸性介质中.

主要方法:

  • 在酸性,中性和性pH上对MnOx的电化学表征.
  • 动力分析包括塔菲尔斜率和质子度依赖.
  • 对MnOx电沉积和溶解机制的研究.

主要成果:

  • 由于通过重新沉积自我愈合,MnOx作为OER催化剂表现出功能稳定性.
  • 确定了两个竞争的OER机制:PCET (性) 和Mn3+) 不成比例 (酸性).
  • 动力分析揭示了OER和MnOx电沉积在pH的不同速率规律.

结论:

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  • 通过MnOx重置的自我愈合抵消了溶解,确保了催化剂的稳定性.
  • OER动力学和沉积动力学之间的相互作用定义了MnOx稳定性区域.
  • 像MnOx这样的非贵金属氧化物可以通过利用自我愈合,在酸性介质中作为稳定的OER催化剂运行.