Results 261 to 270 of about 404,078 (317)

Designing Surface and Interface of Catalyst: from Bimodal Catalyst to Capsule Catalyst

open access: yesAbstract of annual meeting of the Surface Science of Japan, 2007
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The Catalyst Genome

Angewandte Chemie International Edition, 2012
The quest for the materials genome— the properties of a material that define its functional properties—has started. This signifies a transition to a new era of materials research where large amounts of materials data become available. The expectation is that this will significantly speed up the discovery of new materials.
Jens K, Nørskov, Thomas, Bligaard
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Catalysts for Change

German Politics and Society, 2022
In 2021, the small parties continued their electoral ascent in Germany. For the first time they received more votes than did the cdu/csu and the spd. Three finished with a double-digit result, and the combined vote share of the top two small parties exceeded that of the largest vote-getter. After the election, a novel three-party coalition arose at the
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Heterogeneous Catalysts

Science, 1980
Proven catalysts exist in many different forms and with many different kinds of composition. An understanding of how catalysts function is beginning to emerge in a few areas, and some superior catalysts have been developed as a result of this knowledge. Applications of new techniques and disciplines should lead to impressive advances in the years ahead.
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The electron is a catalyst

Nature Chemistry, 2014
The electron is an efficient catalyst for conducting various types of radical cascade reaction that proceed by way of radical and radical ion intermediates. But because electrons are omnipresent, catalysis by electrons often passes unnoticed. In this Review, a simple analogy between acid/base catalysis and redox catalysis is presented.
Armido, Studer, Dennis P, Curran
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Aerogel Catalysts

Advances in Science and Technology, 2010
Aerogels are often largely mesoporous solids, with a porosity which may exceed 90 vol% and a specific surface area up to 1000 m2 g-1. Such materials were first obtained by Kistler in 1932, and designate gels in which the liquid was replaced with a gas without collapsing the gel solid network. Contrary to xerogels dried from wet gels by evaporation with
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