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Preparation and Reactions of Sulfides02:26

Preparation and Reactions of Sulfides

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Sulfides are the sulfur analog of ethers, just as thiols are the sulfur analog of alcohol. Like ethers, sulfides also consist of two hydrocarbon groups bonded to the central sulfur atom. Depending upon the type of groups present, sulfides can be symmetrical or asymmetrical. Symmetrical sulfides can be prepared via an SN2 reaction between 2 equivalents of an alkyl halide and one equivalent of sodium sulfide.
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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...
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Catalysis02:50

Catalysis

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The presence of a catalyst affects the rate of a chemical reaction. A catalyst is a substance that can increase the reaction rate without being consumed during the process. A basic comprehension of a catalysts’ role during chemical reactions can be understood from the concept of reaction mechanisms and energy diagrams.
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Reduction of Alkenes: Catalytic Hydrogenation02:13

Reduction of Alkenes: Catalytic Hydrogenation

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Alkenes undergo reduction by the addition of molecular hydrogen to give alkanes. Because the process generally occurs in the presence of a transition-metal catalyst, the reaction is called catalytic hydrogenation.
Metals like palladium, platinum, and nickel are commonly used in their solid forms — fine powder on an inert surface. As these catalysts remain insoluble in the reaction mixture, they are referred to as heterogeneous catalysts.
The hydrogenation process takes place on the...
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Reduction of Alkynes to cis-Alkenes: Catalytic Hydrogenation02:24

Reduction of Alkynes to cis-Alkenes: Catalytic Hydrogenation

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Introduction
Like alkenes, alkynes can be reduced to alkanes in the presence of transition metal catalysts such as Pt, Pd, or Ni. The reaction involves two sequential syn additions of hydrogen via a cis-alkene intermediate.
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Preparation and Reactions of Thiols02:33

Preparation and Reactions of Thiols

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Thiols are prepared using the hydrosulfide anion as a nucleophile in a nucleophilic substitution reaction with alkyl halides. For instance, bromobutane reacts with sodium hydrosulfide to give butanethiol.
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このページは機械翻訳されています。他のページは英語で表示される場合があります。View in English
  1. ホーム
  2. 研究分野
  3. エンジニアリング
  4. 化学工学
  5. エネルギーと燃焼における化学的および熱的プロセス
  6. 炭素と金属硫化物で安定した硫黄ダイマーでメタンh2sをリフォームする

炭素と金属硫化物で安定した硫黄ダイマーでメタンH2Sをリフォームする

Yong Wang1,2, Wenru Zhao3, Xiaofeng Chen1

  • 1Department of Chemistry and Catalysis Research Center, Technische Universität München, Lichtenbergstrasse 4, 85748 Garching, Germany.

Journal of the American Chemical Society
|March 15, 2024

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Synthesis of Metal Nanoparticles Supported on Carbon Nanotube with Doped Co and N Atoms and its Catalytic Applications in Hydrogen Production
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Synthesis of Metal Nanoparticles Supported on Carbon Nanotube with Doped Co and N Atoms and its Catalytic Applications in Hydrogen Production

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Synthesis of Terpolymers at Mild Temperatures Using Dynamic Sulfur Bonds in PolyS-Divinylbenzene
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PubMed で要約を見る

まとめ
この要約は機械生成です。

メタンの硫化水素リフォーミング (HRM) は,酸性天然ガスをCO2のないH2と硫黄に直接変換します. ダイナミックに形成された硫黄二酸化物は,メタンの活性化と効率的な変換の鍵です.

科学分野:

  • カタリシス
  • 材料科学
  • 化学工学

背景:

  • 酸性天然ガスは,H2Sの含有量が高いため,利用が困難です.
  • メタンの硫化水素リフォーム (HRM) は,H2と貴重な硫黄化学物質を生産する経路を提供します.
  • 炭素材料と移行金属は,HRMの触媒として調査されています.

研究 の 目的:

  • 炭素を支える金属触媒でメタンのH2Sリフォームのメカニズムを調査する.
  • HRMプロセスのアクティブサイトとレート決定のステップを特定します.
  • メタンの活性化と触媒における硫黄の役割を理解する.

主な方法:

  • 代表的な触媒を用いた実験的運動および同位体研究.
  • 実験結果を裏付ける理論的計算
  • 触媒の安定性と活性種の特徴

主要な成果:

  • 炭素支柱は反応条件下で金属の焼却を防ぐ.
  • H2S分解とH原子再結合は準均衡している.
  • 初期C−H結合分裂は速度を制限するステップである.
  • ダイナミックに形成された表面硫黄二酸化物は,メタンの活性化部位として特定されています.

関連する実験動画

Synthesis of Metal Nanoparticles Supported on Carbon Nanotube with Doped Co and N Atoms and its Catalytic Applications in Hydrogen Production
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Synthesis and Testing of Supported Pt-Cu Solid Solution Nanoparticle Catalysts for Propane Dehydrogenation
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Synthesis of Terpolymers at Mild Temperatures Using Dynamic Sulfur Bonds in PolyS-Divinylbenzene
09:16

Synthesis of Terpolymers at Mild Temperatures Using Dynamic Sulfur Bonds in PolyS-Divinylbenzene

Published on: May 20, 2019

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結論:

  • HRMは酸性天然ガスの利用に有効な戦略です.
  • 硫化物/炭素表面の硫黄二極体は,触媒活動に不可欠である.
  • これらの活性サイトを理解することで,より効率的なHRM触媒の設計が可能になります.