
Academic Journal
Q1Nano Letters
About Nano Letters
Nano Letters is a scholarly journal published by American Chemical Society. SCImago 2025 places it in Q1 with an SJR of 2.594 and an H-index of 584.
Its listed coverage is 2001-2026 and its research categories include Bioengineering (Q1); Chemistry (miscellaneous) (Q1); Condensed Matter Physics (Q1); Materials Science (miscellaneous) (Q1); Mechanical Engineering (Q1); Nanoscience and Nanotechnology (Q1). The 2025 dataset reports 2257 documents and 43861 citations across the latest three-year reporting window.
Nano Letters is a highly regarded scientific journal dedicated to publishing cutting-edge research in the fields of nanoscience and nanotechnology. As one of the premier journals in this area, it has become an essential resource for researchers, scientists, and engineers working in diverse fields such as materials science, physics, chemistry, and biology. The journal, published by the American Chemical Society (ACS), covers a wide range of topics related to the synthesis, characterization, and applications of nanomaterials, offering a wealth of information to those at the forefront of nanotechnology innovation.
Overview of Nano Letters
Since its inception, Nano Letters has been at the forefront of publishing groundbreaking research in the rapidly evolving field of nanotechnology. The journal features high-quality articles that contribute significantly to advancing our understanding of nanoscale phenomena and applications. It covers a broad spectrum of topics, including but not limited to:
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Nanomaterials and nanostructures
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Nanoelectronics and nanophotonics
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Nanobiotechnology
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Energy harvesting and storage devices
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Environmental nanotechnology
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Surface science and nanomechanics
With a focus on practical applications and theoretical research, Nano Letters is a vital publication for anyone interested in nanoscience. The articles published in the journal are peer-reviewed, ensuring the highest standards of scientific rigor.
Why Nano Letters is Important in Nanotechnology Research
Nano Letters plays a critical role in shaping the future of nanotechnology. Its content is diverse, presenting breakthrough studies, novel applications, and theoretical advancements that push the boundaries of what is possible at the nanoscale. For researchers and scientists, the journal offers a wealth of information that can inspire new ideas and innovations in nanotechnology.
The journal’s high impact factor and reputation for publishing top-tier research make it a valuable resource for anyone working in nanoscience. It is particularly crucial for those involved in interdisciplinary research, as nanotechnology often intersects with fields such as chemistry, physics, engineering, and biology. Furthermore, Nano Letters serves as a platform for researchers to share their discoveries with a global audience, fostering collaboration and innovation across borders.
Key Features of Nano Letters
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Rapid Publication: One of the standout features of Nano Letters is its commitment to rapid publication. As the field of nanotechnology is constantly evolving, timely dissemination of new research is crucial. The journal ensures that cutting-edge findings are published quickly, allowing researchers to stay ahead of the curve.
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High Impact Factor: With its high impact factor, Nano Letters is one of the most respected journals in the nanoscience community. Its articles are widely cited by other researchers, indicating the journal’s influence in shaping the direction of nanotechnology research.
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Interdisciplinary Focus: Nanotechnology is an inherently interdisciplinary field, and Nano Letters reflects this by publishing research from a variety of disciplines, including materials science, chemistry, physics, engineering, and biology. This interdisciplinary approach is essential for driving innovation in nanoscience.
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Peer-Reviewed Content: Every article submitted to Nano Letters undergoes a rigorous peer-review process. This ensures that the research published in the journal meets the highest standards of scientific integrity and quality.
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Open Access Options: In addition to traditional subscription-based access, Nano Letters offers open-access options for authors who wish to make their work freely available to a broader audience. This enhances the visibility and impact of the research published in the journal.
Journal Metrics
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Aims & Scope
Nano Letters is a prestigious journal that has made significant contributions to the field of nanotechnology, offering a platform for groundbreaking research and developments in this rapidly evolving area. Since its inception, it has provided an authoritative space for the publication of short, high-impact papers, focusing on both fundamental and applied aspects of nanoscience and nanotechnology. The scope of Nano Letters encompasses a wide array of topics, ranging from the synthesis of novel nanomaterials to the exploration of their potential applications in diverse industries.
1. Nanomaterials and Synthesis Techniques
One of the core areas covered in Nano Letters is the development and synthesis of nanomaterials. These materials, which exhibit unique properties at the nanoscale, are critical for advancing various technological applications. Researchers present innovative methods for fabricating nanoparticles, nanowires, nanotubes, and thin films with unprecedented precision. The journal also delves into the characterization techniques used to study these materials, highlighting cutting-edge approaches to understanding their structure, composition, and behavior at the nanoscale.
2. Nanotechnology in Electronics and Photonics
Nano Letters provides significant insight into the use of nanotechnology in electronics and photonics. The journal features research on nanoscale transistors, memory devices, and photonic components that have the potential to revolutionize the electronics industry. Additionally, it covers advancements in quantum dots, optoelectronics, and plasmonics, all of which are poised to enable more efficient and miniaturized electronic devices. The journal emphasizes the integration of nanomaterials into these technologies, which could lead to faster, more energy-efficient devices.
3. Nanomedicine and Healthcare Applications
Nanomedicine is another vital aspect of the scope of Nano Letters, with numerous studies dedicated to the development of nanoscale materials and devices for medical applications. This includes the design of drug delivery systems, diagnostic tools, and therapies that leverage the unique properties of nanoparticles. Nanomaterials offer the potential for targeted drug delivery, minimizing side effects, and improving the effectiveness of treatments for various diseases, including cancer. The journal frequently publishes research on the biocompatibility and toxicity of nanomaterials, which is crucial for their safe application in healthcare.
4. Environmental and Energy Applications
The journal also covers the growing interest in using nanotechnology to address global environmental and energy challenges. Research articles focus on the development of sustainable energy solutions, such as solar cells, batteries, and supercapacitors, using nanomaterials to enhance performance and efficiency. In addition, the journal explores nanotechnology's potential in environmental remediation, where nanomaterials are used for water purification, waste treatment, and air quality improvement. These applications could play a critical role in addressing the pressing issues of climate change and resource depletion.
5. Fundamental Research in Nanoscience
In addition to applied research, Nano Letters publishes fundamental studies that explore the physical, chemical, and biological properties of nanomaterials. These foundational insights contribute to the broader understanding of nanoscience and enable future innovations in nanotechnology. Topics covered include quantum mechanics at the nanoscale, surface interactions, and the behavior of nanomaterials in complex environments.
Recent Research Articles
Latest publications matched automatically by ISSN.
Issue Editorial Masthead
2026-09-09 · DOI: 10.1021/nlv026i035_2127241Rational Quantification of Deep Sodium Reversibility with a Utilization-Corrected N/P Descriptor toward Low-N/P-Ratio Solid-State Na–S Batteries
Ziyu Feng, Weiwei Zhang, Hong Zhang, Xiaofan Liu et al.
2026-09-09 · DOI: 10.1021/acs.nanolett.6c02841Chiral Water Structures on the Dolomite(104)-S Surface Enantiomer
Paul Laubrock, Jonas Heggemann, Jie Huang, Adam S. Foster et al.
2026-09-09 · DOI: 10.1021/acs.nanolett.6c03227Bulk-Like Compressibility of the Au–Au Metallic Bond in the Atomically Precise Au25 Cluster
Camino Martín-Sánchez, Khadijetou Ahmed Ethmane, Nicholas Giamboni, Latévi Max Lawson Daku et al.
2026-09-09 · DOI: 10.1021/acs.nanolett.6c02846Bias-Driven Hot-Correlated Electrons in the Two-Dimensional Ferromagnet Fe4GeTe2
Declan Nell, Stefano Sanvito, Andrea Droghetti
2026-09-09 · DOI: 10.1021/acs.nanolett.6c02700Ultrafast Laser-Engineered Hierarchical Interface for Synergistic Radiative Cooling and Droplet Energy Harvesting
Chao Chen, Jianhan Wang, Kai Shi, Hongwen Zhang et al.
2026-09-09 · DOI: 10.1021/acs.nanolett.6c03624Issue Publication Information
2026-09-09 · DOI: 10.1021/nlv026i035_2127240Triple-Helical Assembly of Atomically Precise Silver Nanocluster-Assembled Material: A p-Type Semiconductor
Nandana Viswanathan, Jithya Narayanan, Soumyadip Hazra, Nisha Job et al.
2026-09-08 · DOI: 10.1021/acs.nanolett.6c03006Electronic Upconversion of Infrared Light via Plasmon-Induced Hot Thermal Carrier Transfer
Sara K. Russo, Matthew J. Crane
2026-09-08 · DOI: 10.1021/acs.nanolett.6c02325Ex Situ Luring Sterilization and Visual Tracking for Wound Healing Acceleration
Mian Zhang, Maojin Tian, Xiantao Xu, Qian Zhou et al.
2026-09-08 · DOI: 10.1021/acs.nanolett.6c01993Vortex Beam Lasing with Controllable Orbital Angular Momentum and Directivity from Laser-Fabricated Gear-Shaped Perovskite Microdisks
Alexey Zhizhchenko, Artem Cherepakhin, Eugeny Mitsai, Shixiong Li et al.
2026-09-08 · DOI: 10.1021/acs.nanolett.6c02157Ferroelectric Generation and Switching of the Hidden Altermagnetism in Parity-Time-Structured Multiferroic CuCrP2S6
Kaixin Zou, Himanshu Mavani, Evgeny Y. Tsymbal, Cheng Gong et al.
2026-09-08 · DOI: 10.1021/acs.nanolett.6c03819Tuning the Magnetic Properties of Kitaev Materials via the Antiferromagnetic Proximity Effect: Novel Phases and Application to an α -RuCl3/MnPS3 Bilayer
Pedro M. Cônsoli, Ezra Day-Roberts, Johannes Knolle, Antia S. Botana et al.
2026-09-08 · DOI: 10.1021/acs.nanolett.6c03321Strong Nanomechanical Duffing Nonlinearity and Interactions Induced through Cavity Optomechanics
Jesse J. Slim, Ewold Verhagen
2026-09-08 · DOI: 10.1021/acs.nanolett.6c02784Optical Phonon Hardening and Anisotropy at a Strained and Chemically Diffuse AlN/GaN Interface
Joaquín E. Reyes González, Alexandre Pofelski, Ayush Pandey, Zetian Mi et al.
2026-09-08 · DOI: 10.1021/acs.nanolett.6c02982Microdroplet Phase Change Leads to Substantial Variation in Exhaled Breath Condensate Sampling
Amio Pronoy Das Ritwik, Yamin Mansur, Yiming Thomas Lu, Jingcheng Ma et al.
2026-09-07 · DOI: 10.1021/acs.nanolett.6c029813D Direct-Ink-Writing Eutectogel with Programmable Architecture for Multimodal Wearable Interfaces in Personalized Rehabilitation
Jun Zhu, Guiru Li, Zijia He, Haolin Wang et al.
2026-09-07 · DOI: 10.1021/acs.nanolett.6c03545Concurrent Defect Healing and Electronic Hybridization Enabling Ultrahigh-Rate and Long-Life Prussian Blue Cathodes
Yahui Yuan, Yi Liu, Zhuowei Sheng, Liuyang Dai et al.
2026-09-07 · DOI: 10.1021/acs.nanolett.6c03692The Interfacial Proton-Transfer Pathway Boosted Acidic Oxygen Evolution
HuangJingWei Li, Haoyu Li, Zhijie Li, Jiali Wu et al.
2026-09-07 · DOI: 10.1021/acs.nanolett.6c02937Defect-Mediated Oxygen Vacancy Engineering of CeO2 Unlocks Fast V2+/V3+ Kinetics for Vanadium Redox Flow Batteries
Yang Yang, Xieyu Xu, Xinru Cheng, Zhongyun Ma et al.
2026-09-07 · DOI: 10.1021/acs.nanolett.6c02931Reviews
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April 22, 2025 at 10:41 am
April 22, 2025