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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...
21.8K
Oxidation of Alkenes: Syn Dihydroxylation with Osmium Tetraoxide02:44

Oxidation of Alkenes: Syn Dihydroxylation with Osmium Tetraoxide

11.1K
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.
11.1K
Oxidation of Alkenes: Anti Dihydroxylation with Peroxy Acids02:04

Oxidation of Alkenes: Anti Dihydroxylation with Peroxy Acids

6.1K
Diols are compounds with two hydroxyl groups. In addition to syn dihydroxylation, diols can also be synthesized through the process of anti dihydroxylation. The process involves treating an alkene with a peroxycarboxylic acid to form an epoxide. Epoxides are highly strained three-membered rings with oxygen and two carbons occupying the corners of an equilateral triangle. This step is followed by ring-opening of the epoxide in the presence of an aqueous acid to give a trans diol.
6.1K
Oxidation and Reduction of Organic Molecules01:19

Oxidation and Reduction of Organic Molecules

8.0K
Energy production within a cell involves many coordinated chemical pathways. Most of these pathways are combinations of oxidation and reduction reactions, which occur at the same time. An oxidation reaction strips an electron from an atom in a compound, and the addition of this electron to another compound is a reduction reaction. Because oxidation and reduction usually occur together, these pairs of reactions are called redox reactions.
The removal of an electron from a molecule, results in a...
8.0K
Oxidations of Aldehydes and Ketones to Carboxylic Acids01:15

Oxidations of Aldehydes and Ketones to Carboxylic Acids

5.7K
Oxidation of aldehydes and ketones results in the formation of carboxylic acids. Aldehydes, bearing hydrogen next to the carbonyl group, are easily oxidized compared to ketones. This is because an aldehydic proton can easily be abstracted during oxidation.
Aldehydes readily undergo oxidation in strong oxidizing agents such as potassium permanganate and chromic acid. The oxidation can also be carried out using mild oxidizing agents such as silver oxide. In fact, aldehydes can be easily oxidized...
5.7K
Radical Oxidation of Allylic and Benzylic Alcohols01:21

Radical Oxidation of Allylic and Benzylic Alcohols

2.2K
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...
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Updated: May 4, 2026

Multi-Scale Modification of Metallic Implants With Pore Gradients, Polyelectrolytes and Their Indirect Monitoring In vivo
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酸化を超えて:分子および表面修正による機能的なアノードメタルマトリックス

Mateusz Schabikowski1, Agnieszka Stróż2, Andrzej Kruk3

  • 1Institute of Nuclear Physics Polish Academy of Sciences, Radzikowskiego 152, 31-342 Kraków, Poland.

International journal of molecular sciences
|August 28, 2025
PubMed
まとめ

アノードメタルマトリクスは高度な材料に 調節可能な性質を提供します. このレビューでは,アノジ化技術,触媒とエネルギー貯蔵における応用,そして次世代の装置の表面改変について考察します.

キーワード:
アノディゼーション化学機能化機能的な材料

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Ultrahigh Density Array of Vertically Aligned Small-molecular Organic Nanowires on Arbitrary Substrates
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Simultaneous Multi-surface Anodizations and Stair-like Reverse Biases Detachment of Anodic Aluminum Oxides in Sulfuric and Oxalic Acid Electrolyte
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科学分野:

  • 材料科学
  • 電気化学
  • 表面工学

背景:

  • 酸化金属マトリクスは高度な材料のための多用途のプラットフォームです.
  • 電気化学的酸化 (アノジ化) は,金属を構造化された酸化物層に変換する.
  • パーソナライズされた多孔性,厚さ,形状は達成可能である.

研究 の 目的:

  • オーダーされたナノ構造を製造するためのアノジ化技術とパラメータをレビューする.
  • 触媒,センサー,エネルギー貯蔵,バイオメディカルエンジニアリングにおけるアノジ化された金属基板の応用を強調する.
  • アノジ化後の表面改変戦略と将来の展望について議論する.

主な方法:

  • アルミニウム,チタン,ニオビウム,亜鉛,タンタールなどの金属の電気化学的酸化 (アノジ化).
  • オーダーされたナノ孔配列,ナノチューブ,ナノワイヤの製造.
  • 化学機能化と薄膜沈殿を含む表面改変技術.

主要な成果:

  • アノディゼーションは,調整可能な物理化学的性質を持つ高度な材料の作成を可能にします.
  • アノード化された金属基板は,様々な用途のための機能的なプラットフォームとして機能します.
  • アノジ化後の改変により,材料の有用性が著しく向上する.

結論:

  • 機能性オキシドアーキテクチャの開発の鍵となる技術である.
  • 最適なアノジゼーションと表面変更は次世代のデバイスにとって不可欠です.
  • このレビューは,設計された酸化物の合理的な設計を導く.