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December 16, 1999Angewandte Chemie International Edition509 citations

Design, Synthesis, and In Situ Characterization of New Solid Catalysts

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JTJohn Meurig Thomas

Key Points

  • The aim is to develop new solid catalysts with precise atomic structures to improve chemical conversions.
  • Designed a range of solid-state catalysts with specific atomic architectures.
  • Characterized catalysts through in situ methods to assess their performance.
  • Synthesized catalysts with microporous and mesoporous properties for better functionality.
  • New catalysts achieve regioselective, shape-selective, and enantioselective conversions.
  • High-performance catalysis is demonstrated for alkene isomerization and hydrogenation.
  • Catalysts show large specific surfaces, enhancing their efficacy in chemical reactions.

Abstract

The precise atomic architecture of the catalytically active center is the central topic of the approach presented herein to the design of solid-state catalysts. A wide range of new catalysts may be designed that effect regioselective, shape-selective, and enantioselective conversions, as well as producing high-performance catalysts for the isomerization and hydrogenation of alkenes and the terminal oxidation of alkanes. All the new catalysts described are either microporous or mesoporous solids that have the dual advantages of possessing large specific surfaces and being amenable to delicate structural and compositional variation.

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Cite This Study

John Meurig Thomas (1999) studied this question.

synapsesocial.com/papers/6a0a03c987ad1657d251f40ahttps://doi.org/10.1002/(sici)1521-3773(19991216)38:24<3588::aid-anie3588>3.0.co;2-4
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