
Academic Journal
Q1Journal of the American Chemical Society
About Journal of the American Chemical Society
Journal of the American Chemical Society is a scholarly journal published by American Chemical Society. SCImago 2025 places it in Q1 with an SJR of 5.491 and an H-index of 759.
Its listed coverage is 1879-2026 and its research categories include Biochemistry (Q1); Catalysis (Q1); Chemistry (miscellaneous) (Q1); Colloid and Surface Chemistry (Q1). The 2025 dataset reports 4685 documents and 143036 citations across the latest three-year reporting window.
The Journal of the American Chemical Society (JACS) stands as one of the most prestigious and influential publications in the field of chemistry. Published by the American Chemical Society (ACS), JACS has been at the forefront of scientific discovery since its inception in 1879. It serves as a primary platform for researchers worldwide to disseminate cutting-edge findings in all areas of chemistry.
What is JACS?
JACS is a peer-reviewed academic journal that publishes original research articles, communications, and reviews in the field of chemistry. It is recognized for its high-impact content, rigorous editorial standards, and global reach. The journal covers a broad spectrum of topics including organic chemistry, inorganic chemistry, physical chemistry, materials science, chemical biology, and theoretical chemistry.
With an impressive impact factor, JACS consistently ranks among the top journals in chemistry. Researchers often consider publication in JACS as a mark of scientific excellence and recognition.
Why is JACS Important?
The Journal of the American Chemical Society plays a critical role in the advancement of chemical science. It provides a reliable platform for researchers to share significant breakthroughs that can lead to real-world applications, such as new drug discoveries, sustainable energy solutions, and novel materials.
JACS fosters interdisciplinary collaboration by publishing innovative research that connects chemistry with biology, physics, and engineering. This multidisciplinary approach has helped shape modern science and drive technological progress.
Key Features of JACS
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High Impact Factor: JACS consistently achieves one of the highest impact factors in the field of chemistry, indicating the high citation rate and influence of its articles.
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Rigorous Peer Review: Articles submitted to JACS undergo a strict peer-review process, ensuring scientific accuracy and integrity.
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Global Reach: With millions of downloads each year, JACS content is accessed by researchers, educators, and industry professionals around the world.
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Diverse Topics: From nanotechnology to environmental chemistry, JACS covers an extensive range of research areas, catering to a broad scientific audience.
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Rapid Publication: JACS offers rapid communication formats for timely dissemination of urgent findings.
How to Publish in JACS
To publish in JACS, researchers must submit a manuscript that meets the journal’s high standards for originality, significance, and clarity. The submission process includes peer review by experts, editorial assessment, and often multiple rounds of revision. Authors should closely follow the journal’s submission guidelines to improve their chances of acceptance
Journal Metrics
Metrics can change by reporting year. Verify time-sensitive values with the publisher or indexing service.
Aims & Scope
The Journal of the American Chemical Society (JACS), published by the American Chemical Society (ACS), is a globally recognized, peer-reviewed journal known for publishing high-quality, impactful research in all areas of chemistry. As one of the most respected scientific journals in the world, JACS has built a strong reputation for showcasing cutting-edge discoveries that shape the future of chemical science. Its broad scope makes it a vital resource for chemists, scientists, and researchers across academia and industry.
What is the Scope of JACS?
The Journal of the American Chemical Society accepts original, innovative, and significant research across the full spectrum of chemistry. Its scope includes—but is not limited to—the following core areas:
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Organic Chemistry: Studies involving the structure, properties, synthesis, and reactions of organic compounds and materials.
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Inorganic Chemistry: Research related to inorganic compounds, coordination chemistry, organometallics, and solid-state chemistry.
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Physical Chemistry: Work exploring the physical properties and behaviors of chemical systems, including thermodynamics, kinetics, and spectroscopy.
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Materials Chemistry: Innovative findings in nanomaterials, polymers, and advanced functional materials with chemical relevance.
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Analytical Chemistry: Techniques and methodologies for the detection, quantification, and analysis of chemical substances.
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Chemical Biology: Research at the interface of chemistry and biology, such as molecular mechanisms and biomolecular design.
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Theoretical and Computational Chemistry: Studies using simulations, modeling, and quantum chemistry to predict and explain chemical behavior.
Interdisciplinary and Emerging Fields
JACS actively seeks groundbreaking work that bridges chemistry with other scientific disciplines. The journal encourages submissions in emerging and interdisciplinary fields such as:
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Green and Sustainable Chemistry
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Energy Conversion and Storage
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Supramolecular Chemistry
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Catalysis and Reaction Mechanisms
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Medicinal and Pharmaceutical Chemistry
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Chemical Engineering Interfaces
By embracing a wide array of subjects, JACS plays a pivotal role in supporting innovation across all areas where chemistry is foundational.
Article Types Published in JACS
JACS publishes various types of content to accommodate different styles of research communication:
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Communications: Brief reports of significant, time-sensitive findings.
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Articles: Full-length papers presenting comprehensive studies.
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Reviews and Perspectives: In-depth analyses and expert opinions on current trends in chemical research.
Audience and Impact
The journal targets a global audience of researchers, educators, students, and industry professionals. With one of the highest impact factors in chemistry publishing, JACS articles are widely cited and influential across scientific disciplines.
Recent Research Articles
Latest publications matched automatically by ISSN.
Engineering a Fast Li + -Diffusion Secondary Phase in Sn Anodes for Low-Pressure All-Solid-State Batteries
Dong Ju Lee, Sesha Sai Behara, Sihyun Kim, Jeremiah Thomas et al.
2026-09-08 · DOI: 10.1021/jacs.6c11667Ultrasound-Synchronized In Situ Crystallization Locks Transient High-Activity Enzyme Conformations within Covalent Organic Frameworks
Hongli Zhou, Shuang Chen, Haiyue Zhou, Yuxuan Han et al.
2026-09-08 · DOI: 10.1021/jacs.6c13996Nickel–Zinc Catalysts Favor CO Production via Carbide Formation in CO2 Hydrogenation
Nágila E. C. Maluf, Maitê L. Gothe, Adriano H. Braga, Laís R. Borges et al.
2026-09-08 · DOI: 10.1021/jacs.6c11100In Situ Gas-Cell Electron Microscopy Reveals Pressure-Selected Restructuring Pathways in AuRu Ammonia Catalysts
Amy S. McKeown-Green, Parivash Moradifar, Zisheng Zhang, Cedric Lim et al.
2026-09-08 · DOI: 10.1021/jacs.6c08457Stereoselective C2′-Alkylation of Nucleosides Enabled by Electrochemical Ni-Catalyzed C(sp3)–C(sp3) Cross-Coupling
Pei-Yi Huang, Yue-Ming Cai, Jia-Wei Liu, Tian Xie et al.
2026-09-08 · DOI: 10.1021/jacs.6c11534Singlet Photoredox Catalysis via Supramolecular Host–Guest Interactions
Sean M. Treacy, Aila V. Rothweiler, Cody Son Tran, Ainsley M. Clark et al.
2026-09-08 · DOI: 10.1021/jacs.6c09969Mitochondrial Dyes with Balanced Permeability-Fixability for Live, Fixed, and Expanded Multicellular Imaging
Jingting Chen, Yue Ma, Peng Chen, Biaoyi Yu et al.
2026-09-08 · DOI: 10.1021/jacs.6c16881Ligand Recognition Directs Functional Ionic Layer Construction on Metal Nanoclusters for Electrocatalysis
Zhihe Liu, Junmei Chen, Yuping Chen, Jia-Hong Huang et al.
2026-09-08 · DOI: 10.1021/jacs.6c12647“Store-and-Release” Strategy Enables Nickel-Catalyzed Deaminative Migratory Arylation of Aliphatic Amines
Abhishek A. Kadam, Kevin Lee, Yumeng Liao, Aleksandr Knyazev et al.
2026-09-08 · DOI: 10.1021/jacs.6c09936Cation-Mediated Proton Transfer Enhances Acidic CO2 Electrolysis on a Molecular Catalyst
Zhuanghe Ren, John Janisch, Kaige Shi, Zhen Meng et al.
2026-09-08 · DOI: 10.1021/jacs.6c09528Correction to “Side-Chain Free Semiconducting Polymer for High-Performance n-Type Organic Electrochemical Transistors”
Yuyun Yao, Mustafeez Bashir Shah, Wanpeng Lu, Xian’e Li et al.
2026-09-08 · DOI: 10.1021/jacs.6c17620Molecular and Surface W-Sites through 31P-Detected and Dynamic Nuclear Polarization Surface-Enhanced 183W NMR Spectroscopy across Olefin Metathesis Catalysts
Merlin Z. Seidel, Felix J. de Zwart, Mattia Ciuoli, Alexander V. Yakimov et al.
2026-09-08 · DOI: 10.1021/jacs.6c13173Cr/Ir Dual-Atom-Doped Cr0.2Ir0.1Ru0.7O2 Electrocatalysts for Overcoming the Activity–Stability Trade-Off in Acidic Water Electrolysis
Panpan Sun, Zelong Qiao, Xuemei Li, Shiqing Huang et al.
2026-09-08 · DOI: 10.1021/jacs.6c13377Cobalt–Copper Single-Atom Alloy Catalyst for Electrochemical Nitric Oxide Reduction to Ammonia
Jiaqi Shao, Shuo Wang, Yunfan Fu, Pengfei Wei et al.
2026-09-08 · DOI: 10.1021/jacs.5c19722Systematic Ligand Modification Tunes the Stability and Reactivity of Copper Complexes for the Electrocatalytic Reduction of Carbon Dioxide
Ramamoorthy Ramasubramanian, Charasee Laddika Dayawansa, Jyun-Chi Lee, Rui-Ze Xu et al.
2026-09-08 · DOI: 10.1021/jacs.6c11205Machine-Learning-Guided Molecular Design for Dynamic Self-Activating Interface toward Ah-Level Anode-Free Zn–I2 Pouch Cells
Jia Wu, Shan Guo, Yuren Liu, Qianyi Qu et al.
2026-09-08 · DOI: 10.1021/jacs.6c15211Correction to “Protein Tyrosine Amination: Detection, Imaging, and Chemoproteomic Profiling with Synthetic Probes”
Lei Chen, Tonghua Yang, Xue Sun, Catherine C. L. Wong et al.
2026-09-08 · DOI: 10.1021/jacs.6c16443Flow-Guided Chemical Language Modeling for Linker Design in Reticular Chemistry
Dhruv Menon, Vivek Singh, Xu Chen, Mohammad Reza Alizadeh Kiapi et al.
2026-09-08 · DOI: 10.1021/jacs.6c06920Tuning H2O-Engaged Redox Reaction Pathway via Water Orientation in Aqueous Batteries
Jinchi Li, Yuhang Liu, Yuange Wang, Yuchen Wu et al.
2026-09-08 · DOI: 10.1021/jacs.6c11498Precise Construction of Heterobimetallic Covalent Organic Frameworks for Cooperative Photocatalysis of Defluorination
Wencui Liang, Yaxin Sun, Ming Gao, Ruike Xu et al.
2026-09-08 · DOI: 10.1021/jacs.6c14431Reviews
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April 21, 2025 at 2:06 pm
April 21, 2025