Water at Interfaces: A Molecular Approach


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Introduction

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2.1 Photomechanical Effects in Monolayers.

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Authors: Simo Pehkonen Shaojun Yuan. Paperback ISBN: Imprint: Academic Press.

Published Date: 29th August Page Count: View all volumes in this series: Interface Science and Technology. For regional delivery times, please check When will I receive my book? The rational understanding and prediction of chemical phenomena occurring at the solid-liquid interface SLI, and more specifically oxide-water interface of alumina supported catalysts represent a double industrial challenge raised by the catalysts' preparation and the optimization of catalytic processes working in liquid water.

This is the case for biomass conversion and Fischer-Tropsch FT synthesis. Moreover, gamma-alumina is used as the industrial support in numerous catalytic processes particularly in the petrochemical and refining industry including those previously cited. Regarding the active phase itself, cobalt is playing a central role in FT and hydrotreating HDT catalysts.

Introduction

In both cases, the improvement of the preparation impregnation and drying in presence of oxygenated organic molecules additives is crucial for maximizing the number of accessible metallic active sites and thus minimizing the number of cobalt atoms lost either in a refractory oxide phase or in the support. The project contains 3 work packages WP combining challenging experimental and theoretical achievements.

WP2 focuses on the experimental and theoretical studies of SLI of gamma-alumina supported cobalt catalysts including the effects of relevant preparation parameters. Recent Awards. Presidential and Honorary Awards.

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Protein-water interactions studied by molecular dynamics simulations

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Water orientation and hydrogen-bond structure at the fluorite/water interface

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Water at Interfaces: A Molecular Approach Water at Interfaces: A Molecular Approach
Water at Interfaces: A Molecular Approach Water at Interfaces: A Molecular Approach
Water at Interfaces: A Molecular Approach Water at Interfaces: A Molecular Approach
Water at Interfaces: A Molecular Approach Water at Interfaces: A Molecular Approach
Water at Interfaces: A Molecular Approach Water at Interfaces: A Molecular Approach
Water at Interfaces: A Molecular Approach Water at Interfaces: A Molecular Approach
Water at Interfaces: A Molecular Approach Water at Interfaces: A Molecular Approach

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