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Journal of the American Chemical Society

Resumen/Descripción – provisto por la editorial en inglés
ACS Catalysis is dedicated to publishing original research on heterogeneous catalysis, homogeneous catalysis, and biocatalysis. Application coverage includes life sciences, drug discovery & development, household products, polymer discovery & production, environmental protection and energy & fuels.
Specifically, the journal includes both experimental and theoretical research and reviews on molecules, macromolecules or materials that are catalytic in nature, that is, they exhibit catalytic turnover.
The journal seeks to acquire content in the areas of new reactions and new approaches to synthesis involving known catalysts, discovery of or modification of new catalysts, novel mechanistic and investigatory studies on catalysis, practical enhancements of known processes, and conceptual advances.
Palabras clave – provistas por la editorial

No disponibles.

Disponibilidad
Institución detectada Período Navegá Descargá Solicitá
No detectada desde ene. 1879 / hasta dic. 2023 ACS Publications

Información

Tipo de recurso:

revistas

ISSN impreso

0002-7863

ISSN electrónico

1520-5126

Editor responsable

American Chemical Society (ACS)

País de edición

Estados Unidos

Fecha de publicación

Tabla de contenidos

Large-Area Graphene Single Crystals Grown by Low-Pressure Chemical Vapor Deposition of Methane on Copper

Xuesong Li; Carl W. Magnuson; Archana Venugopal; Rudolf M. Tromp; James B. Hannon; Eric M. Vogel; Luigi Colombo; Rodney S. Ruoff

Pp. 2816-2819

Measurements and Modeling of Recombination from Nanoparticle TiO2 Electrodes

Jesse W. Ondersma; Thomas W. Hamann

Palabras clave: Colloid and Surface Chemistry; Biochemistry; General Chemistry; Catalysis.

Pp. 8264-8271

Trehalose Glycopolymers for Stabilization of Protein Conjugates to Environmental Stressors

Rock J. Mancini; Juneyoung Lee; Heather D. Maynard

Palabras clave: Colloid and Surface Chemistry; Biochemistry; General Chemistry; Catalysis.

Pp. 8474-8479

Prediction of Catalyst and Substrate Performance in the Enantioselective Propargylation of Aliphatic Ketones by a Multidimensional Model of Steric Effects

Kaid C. Harper; Sarah C. Vilardi; Matthew S. Sigman

Palabras clave: Colloid and Surface Chemistry; Biochemistry; General Chemistry; Catalysis.

Pp. 2482-2485

Exciplex Formation in Bimolecular Photoinduced Electron-Transfer Investigated by Ultrafast Time-Resolved Infrared Spectroscopy

Marius Koch; Romain Letrun; Eric Vauthey

Palabras clave: Colloid and Surface Chemistry; Biochemistry; General Chemistry; Catalysis.

Pp. 4066-4074

Cell Protective, ABC Triblock Polymer-Based Thermoresponsive Hydrogels with ROS-Triggered Degradation and Drug Release

Mukesh K. Gupta; John R. Martin; Thomas A. Werfel; Tianwei Shen; Jonathan M. Page; Craig L. Duvall

Pp. 14896-14902

Two-Dimensional Cu2Si Monolayer with Planar Hexacoordinate Copper and Silicon Bonding

Li-Ming Yang; Vladimir Bačić; Ivan A. Popov; Alexander I. Boldyrev; Thomas Heine; Thomas Frauenheim; Eric Ganz

Palabras clave: Colloid and Surface Chemistry; Biochemistry; General Chemistry; Catalysis.

Pp. 2757-2762

Mechanistically Driven Development of an Iron Catalyst for SelectiveSyn-Dihydroxylation of Alkenes with Aqueous Hydrogen Peroxide

Margarida Borrell; Miquel CostasORCID

Palabras clave: Colloid and Surface Chemistry; Biochemistry; General Chemistry; Catalysis.

Pp. 12821-12829

Reaction Mechanism for the Hydrogen Evolution Reaction on the Basal Plane Sulfur Vacancy Site of MoS2 Using Grand Canonical Potential Kinetics

Yufeng HuangORCID; Robert J. Nielsen; William A. GoddardORCID

Palabras clave: Colloid and Surface Chemistry; Biochemistry; General Chemistry; Catalysis.

Pp. 16773-16782

Enantioselective Synthesis of Isocarbostyril Alkaloids and Analogs Using Catalytic Dearomative Functionalization of Benzene

Tanner W. Bingham; Lucas W. HernandezORCID; Daniel G. Olson; Riley L. Svec; Paul J. Hergenrother; David SarlahORCID

Palabras clave: Colloid and Surface Chemistry; Biochemistry; General Chemistry; Catalysis.

Pp. 657-670