Nano Letters

ISSN: 1530-6984

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Nano Letters Q1 Unclaimed

American Chemical Society United States
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Nano Letters is a forum for reporting original results on fundamental, applied, and emerging research in all areas of nanoscience and nanotechnology that require rapid dissemination. A chief criterion to fit within the scope of Nano Letters is the convergence of at least two different areas or disciplines. Areas of interest to the journal include: Experimental and theoretical results; Synthesis, characterization, and processing; Modeling and simulation of precesses and Applications of nanoscale materials It has an SJR impact factor of 3,54.

Nano Letters focuses its scope in these topics and keywords: graphene, nanoparticles, quantum, dna, silicon, single, solar, spin, silver, magnetic, ...

Type: Journal

Type of Copyright:

Languages: English

Open Access Policy: Open Choice

Type of publications:

Publication frecuency: -

Metrics

Nano Letters

3,54

SJR Impact factor

531

H Index

1426

Total Docs (Last Year)

3719

Total Docs (3 years)

64284

Total Refs

41210

Total Cites (3 years)

3704

Citable Docs (3 years)

10.74

Cites/Doc (2 years)

45.08

Ref/Doc

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Aims and Scope


graphene, nanoparticles, quantum, dna, silicon, single, solar, spin, silver, magnetic, metal, optical, surface, synthesis, nanocrystals, carbon, semiconductor, deposition, shell, nanofibers, nanowire, nanowires, polymer, induced,



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In Situ Observation of Random Solid Solution Zone in LiFePO4 Electrode

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Local Charge Injection and Extraction on Surface-Modified Al2O3 Nanoparticles in LDPE

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Ultralow-Noise Atomic-Scale Structures for Quantum Circuitry in Silicon

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Spin Orientation of Two-Dimensional Electrons Driven by Temperature-Tunable Competition of Spin-Orbit and Exchange-Magnetic Interactions

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Ultralow-Power Electronic Trapping of Nanoparticles with Sub-10 nm Gold Nanogap Electrodes

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Colorimetry Technique for Scalable Characterization of Suspended Graphene

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Propagation of Structural Disorder in Epitaxially Connected Quantum Dot Solids from Atomic to Micron Scale

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Nanoparticle Dynamics in a Nanodroplet

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