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Catalysts discovery

J. H. Sinfelt, Bimetallic Catalysts Discoveries, Concepts, and Applications, Wiley, New York, 1983. [Pg.743]

Catalyst Discovery and Optimization via High-throughput Screening... [Pg.99]

Although there are many procedures that could, in principle, be used to apply computational techniques to catalyst discovery processes, we have found that the following... [Pg.78]

Catalyst Discovery The First Homogeneous Catalysts Derived from Combinatorial Technologies for a Variety of Cross-Coupling... [Pg.177]

Dihydrobenzo[b]furans can be synthesized by using Pd(dba)2/PhsFcP(r-Bu)2 as an efficient catalyst at room temperature, and some interesting discussions related to this catalyst discovery are also addressed <00JA10718>. Buchwald also shows that bulky, electron-rich o-biarylphosphines are effective in PdfOAcfe-catalyzed cross-coupling reactions for the generation of 2,3-dihydrobenzo[6]furans <00JA12907>. [Pg.158]

Combinatorial-Parallel Approaches to Catalyst Discovery and Development... [Pg.433]

Gibb, Thomas, R. P., Jr., Primary Solid Hydrides Gilbertson, Scott R., Combinatorial-Parallel Approaches to Catalyst Discovery 3 315... [Pg.630]

B. Chen, G. Parker II, J. Han, M. Meyyappan, and A. M. Cassell, Heterogeneous single-walled carbon nanotube catalyst discovery and optimization, Chem. Mater. 14, 1891 (2002). [Pg.14]

Sinfelt, J. (1983) Bimetallic Catalysts Discovery, Concepts and Applications, John Wiley Sons, Inc., New York, USA. [Pg.287]

The chapters in this volume illustrate how molecular concepts underlie catalysis. They illustrate how modern concepts of biology are influencing catalysis and catalyst discovery how concepts of homogeneous and surface catalysis have merged (a theme that is evident in the preceding several volumes of the Advances), exemplified by dendrimer catalysts that have properties of both molecules and surfaces and how concepts of molecular catalysis by bases have influenced the development of new solid-base catalysts and fundamental understanding of how they function. [Pg.310]


See other pages where Catalysts discovery is mentioned: [Pg.183]    [Pg.233]    [Pg.156]    [Pg.23]    [Pg.78]    [Pg.178]    [Pg.178]    [Pg.180]    [Pg.182]    [Pg.184]    [Pg.519]    [Pg.1098]    [Pg.435]    [Pg.437]    [Pg.439]    [Pg.441]    [Pg.443]    [Pg.445]    [Pg.447]    [Pg.449]    [Pg.451]    [Pg.453]    [Pg.455]    [Pg.457]    [Pg.459]    [Pg.461]    [Pg.463]    [Pg.465]    [Pg.467]    [Pg.469]    [Pg.472]    [Pg.396]   
See also in sourсe #XX -- [ Pg.8 ]

See also in sourсe #XX -- [ Pg.436 , Pg.508 ]




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Application catalyst discovery

Approach for Discovery and Optimisation of New Catalysts

Black Box Discovery and Optimisation of New Catalysts

Black Box Discovery and Optimisation of New Catalysts Using an Evolutionary Strategy

Catalyst Discovery and Optimization via High-throughput Screening

Catalyst Discovery via High-Throughput Experimentation

Combinatorial catalyst discovery

Discovery Screening Workflow for New Polyolefin Catalysts

Discovery of Highly Active Molecular Catalysts for Ethylene Polymerization

Dynamic Approaches towards Catalyst Discovery

Dynamic catalyst discovery

Homogeneous chiral catalyst discovery

Phillips polyethylene catalysts discovery

Polyolefins catalyst discoveries

Ziegler-Natta catalysts discovery

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