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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

Speciation of Cu Surfaces During the Electrochemical CO Reduction Reaction

Yaran Zhao; Xiaoxia ChangORCID; Arnav S. Malkani; Xuan YangORCID; Levi Thompson; Feng JiaoORCID; Bingjun XuORCID

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

Pp. No disponible

Environmental Effects on Guanine-Thymine Mispair Tautomerization Explored with Quantum Mechanical/Molecular Mechanical Free Energy Simulations

Pengfei LiORCID; Atul Rangadurai; Hashim M. Al-Hashimi; Sharon Hammes-SchifferORCID

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

Pp. 11183-11191

Magnetism, Ultrasound, and Light-Stimulated Mesoporous Silica Nanocarriers for Theranostics and Beyond

Fang-Chu LinORCID; Yijun XieORCID; Tian Deng; Jeffrey I. ZinkORCID

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

Pp. No disponible

Deciphering Metal–Oxide and Metal–Metal Interplay via Surface Organometallic Chemistry: A Case Study with CO2 Hydrogenation to Methanol

Scott R. DochertyORCID; Christophe CopéretORCID

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

Pp. 6767-6780

Mild Magnetic Hyperthermia-Activated Innate Immunity for Liver Cancer Therapy

Jiong Pan; Yingying Xu; Qingsheng WuORCID; Ping Hu; Jianlin ShiORCID

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

Pp. 8116-8128

Covalent Adaptable Networks Using β-Amino Esters as Thermally Reversible Building Blocks

Christian TaplanORCID; Marc GuerreORCID; Filip E. Du PrezORCID

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

Pp. No disponible

Micro- vs Macrosolvation in Reichardt’s Dyes

Adam C. Plenert; Enrique Mendez-VegaORCID; Wolfram SanderORCID

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

Pp. 13156-13166

A Self-Regulating DNA Rotaxane Linear Actuator Driven by Chemical Energy

Ze Yu; Mathias Centola; Julián ValeroORCID; Michael Matthies; Petr ŠulcORCID; Michael FamulokORCID

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

Pp. 13292-13298

Strain-Modulated Seeded Growth of Highly Branched Black Au Superparticles for Efficient Photothermal Conversion

Qixuan Zhong; Ji Feng; Bo JiangORCID; Yulong FanORCID; Qiao ZhangORCID; Jinxing ChenORCID; Yadong YinORCID

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

Pp. No disponible

Bifunctional Iminophosphorane-Catalyzed Enantioselective Sulfa-Michael Addition to Unactivated α,β-Unsaturated Amides

Daniel RozsarORCID; Michele FormicaORCID; Ken YamazakiORCID; Trevor A. HamlinORCID; Darren J. DixonORCID

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

Pp. No disponible