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2007, ISBN 9780471731665, x, 472
The chemistry of reactive intermediates is central to a modern mechanistic and quantitative understanding of organic chemistry. Moreover, it underlies a... 
Intermediates (Chemistry) | Chemistry, Organic | Computer Programming | Science | Chemistry | Organic | Organic chemistry
Book
Chemistry – A European Journal, ISSN 0947-6539, 01/2018, Volume 24, Issue 2, pp. 342 - 346
A general and efficient procedure for C−H alkenylation of arenes with a broad substrate scope catalyzed by Cp*CoIII was demonstrated with alkynes. A highly... 
reaction mechanisms | C−H bond alkenylation | hydroarylation | molecular CpCo catalysts | reactive intermediates | mechanisms | Bonds | Catalysis | Hydrogen bonds | Aromatic compounds | Cobalt | Substrates | Alkynes
Journal Article
Angewandte Chemie International Edition, ISSN 1433-7851, 07/2010, Volume 49, Issue 31, pp. 5232 - 5241
Journal Article
The New England Journal of Medicine, ISSN 0028-4793, 05/2016, Volume 374, Issue 21, pp. 2021 - 2031
Journal Article
Experimental Cell Research, ISSN 0014-4827, 2007, Volume 313, Issue 10, pp. 2244 - 2254
Before we can explain why so many closely related intermediate filament genes have evolved in vertebrates, while maintaining such dramatically tissue specific... 
Vimentin | Nestin | Stroke | Intermediate filaments | Nanofilament proteins | Desmin, myopathy, mitochondrial pathology, astrocytes, reactive gliosis | Nanofilaments | Müller cells | Retina | Mallory bodies | GFAP | Neurotrauma | Pathological vascularization | Osmotic stress | Blister formation | Stress, keratin | Shear stress | Hypoxia | Alexander disease | Rosenthal fibers | CNS regeneration | Intermediate filament proteins | Fluid flow stress | Nuclear lamins | EPIDERMOLYSIS-BULLOSA SIMPLEX | FLUID SHEAR-STRESS | nanofilaments | nestin | desmin, myopathy, mitochondrial pathology, astrocytes | vimentin | Muller cells | CELL BIOLOGY | intermediate filament proteins | osmotic stress | shear stress | retina | ENDOTHELIAL-CELLS | blister formation | HUMAN EPIDERMAL-KERATINOCYTES | HYPOTONIC STRESS | intermediate filaments | hypoxia | stress, keratin | reactive gliosis | neurotrauma | ACTIVE FORCE GENERATION | stroke | pathological vascularization | MICE LACKING DESMIN | ONCOLOGY | FIBRILLARY ACIDIC PROTEIN | nuclear lamins | nanofilament proteins | ALEXANDER-DISEASE | fluid flow stress | MECHANICAL STRETCH | Intermediate Filaments - genetics | Stress, Physiological - genetics | Vimentin - metabolism | Humans | Stress, Mechanical | Stress, Physiological - physiopathology | Intermediate Filaments - metabolism | Mutation - genetics | Animals | Keratins - metabolism | Adaptation, Physiological - genetics | Vimentin - genetics | Desmin - metabolism | Stress, Physiological - metabolism | Intermediate Filament Proteins - genetics | Desmin - genetics | Keratins - genetics | Intermediate Filament Proteins - metabolism | Proteins | Cellular biology | Gene expression | Molecular biology | Keratins | Fysiologi | Cell and Molecular Biology | Desmin | Stress | physiopathology | genetics | Intermediate Filaments | Mechanical | Physiology | metabolism | Mutation | Cell- och molekylärbiologi | Physiological | Intermediate Filament Proteins | Adaptation
Journal Article
Journal of the American Chemical Society, ISSN 0002-7863, 04/2013, Volume 135, Issue 16, pp. 6018 - 6021
Single electron transfer from the ZrIIICo0 heterobimetallic complex (THF)Zr(MesNP i Pr2)3Co–N2 (1) to benzophenone was previously shown to result in the... 
METAL-CARBENES | KETONES | COMPLEX CHEMISTRY | LIGANDS | REACTIVE ORGANIC-COMPOUNDS | CRYSTAL-STRUCTURES | STRUCTURAL-CHARACTERIZATION | SELECTIVITY | CHEMISTRY, MULTIDISCIPLINARY | Density functionals | Usage | Metal bonding | Electron transport | Analysis | Methods
Journal Article
Angewandte Chemie International Edition, ISSN 1433-7851, 01/2019, Volume 58, Issue 2, pp. 566 - 571
There is an increasing amount of interest in metal–organic frameworks (MOFs) for a variety of applications, from gas sensing and separations to electronics and... 
nanoparticles | kinetics | metal–organic frameworks | reactive intermediates | crystal engineering | NANOCRYSTALS | X-RAY-DIFFRACTION | TIME | CRYSTAL | CHEMISTRY, MULTIDISCIPLINARY | metal-organic frameworks | TEMPERATURE | GROWTH | NUCLEATION | EXCHANGE | PHASE-CHANGE | EGR-1 protein | Metals | Crystallization | Catalysis | Metal-organic frameworks | Equilibrium | Gas sensors | Intermediates
Journal Article