Description

Book Synopsis
Over 7000 papers are published in the field of catalysis each year. While the majority appear within a handful publications, keeping up with the literature can be difficult. Now in its 25th volume, the Specialist Periodical Report on Catalysis presents critical and comprehensive reviews of the hottest literature published over the last twelve months. Industrial and academic scientists face increasing challenges to find cost-effective and environmentally sound methods for converting natural resources into fuels, chemicals and energy. This series is edited by two leading researchers in the field and provides a balanced and in-depth review of the modern approaches to these challenges, covering major areas of heterogeneous and homogenous catalysis, as well as specific applications of catalysis, such as NOx control, kinetics and experimental techniques, such as microcalorimetry. With chapters detailing specific areas within the field, this series is a comprehensive reference for anyone working in Catalysis and an essential resource for any Chemistry Library.

Table of Contents
Preface; Gaining insight into the kinetics of partial oxidation of light hydrocarbons on Rh, though a multiscale methodology based on advanced experimental and modelling techniques; Theoretical tools for studying gold nanoparticles as catalysts for oxidation and hydrogenation reactions; PdZn based catalysts: connecting electronic and geometric structure with catalytic performance; Structural manipulation of the catalysts for ammonia decomposition; Applications of electron beam lithography in surface science and catalysis - model-nano-array catalysts; High throughput technology; approaches of research in homogeneous and heterogeneous catalysis; Core-shell catalysts and bimodel catalysts for Fischer-Tropsch synthesis

Catalysis: Volume 25

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    £314.95

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    Order before 4pm tomorrow for delivery by Wed 5 Aug 2026.

    A Hardback by James J Spivey, K M Dooley, Yi-Fan Han

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      View other formats and editions of Catalysis: Volume 25 by James J Spivey

      Publisher: Royal Society of Chemistry
      Publication Date: Publication Date: 19/03/2013
      ISBN13: 9781849735780, 978-1849735780
      ISBN10: 1849735786

      Description

      Book Synopsis
      Over 7000 papers are published in the field of catalysis each year. While the majority appear within a handful publications, keeping up with the literature can be difficult. Now in its 25th volume, the Specialist Periodical Report on Catalysis presents critical and comprehensive reviews of the hottest literature published over the last twelve months. Industrial and academic scientists face increasing challenges to find cost-effective and environmentally sound methods for converting natural resources into fuels, chemicals and energy. This series is edited by two leading researchers in the field and provides a balanced and in-depth review of the modern approaches to these challenges, covering major areas of heterogeneous and homogenous catalysis, as well as specific applications of catalysis, such as NOx control, kinetics and experimental techniques, such as microcalorimetry. With chapters detailing specific areas within the field, this series is a comprehensive reference for anyone working in Catalysis and an essential resource for any Chemistry Library.

      Table of Contents
      Preface; Gaining insight into the kinetics of partial oxidation of light hydrocarbons on Rh, though a multiscale methodology based on advanced experimental and modelling techniques; Theoretical tools for studying gold nanoparticles as catalysts for oxidation and hydrogenation reactions; PdZn based catalysts: connecting electronic and geometric structure with catalytic performance; Structural manipulation of the catalysts for ammonia decomposition; Applications of electron beam lithography in surface science and catalysis - model-nano-array catalysts; High throughput technology; approaches of research in homogeneous and heterogeneous catalysis; Core-shell catalysts and bimodel catalysts for Fischer-Tropsch synthesis

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