9.855 Impact Factor for ACS Nano with citations rapidly rising!

The 2010 Impact Factor for ACS Nano has increased to 9.855*, with 9905 citations in 2010 (~3x citations in 2009), and already 9000+ citations in 2011 year-to-date.

Highly Ranked in Multiple Categories

ACS Nano was launched in mid-year in 2007, and in impact factor is already #5 in Nanoscience and Nanotechnology, #9 in Multidisciplinary Chemistry and in Multidisciplinary Materials Science, #8 in Physical Chemistry, and is the top comprehensive article journal in each of these categories. 

An Eight-Time “Rising Star”

More evidence of ACS Nano’s rapid rise: the journal was recently named a “Rising Star” in Chemistry for the 8th time by Thomson Reuters’ Science Watch, a record in the Chemistry category. Late last year, ACS Nano published its first Virtual Issue on Nanotoxicology and its second earlier this year on Drug Delivery, both of which generated great interest. ACS Nano has just released a new Virtual Issue on Plasmonics. Please stay tuned for new developments from ACS Nano throughout the year by visiting www.acsnano.org.

Impact around the World

Articles published in ACS Nano received a great deal of attention in the popular and scientific press, including The Economist, Nature, Popular Mechanics, Science, Technology Review, and many others, including BBC, CBS, CNN, Fox, MSNBC, and other international television and radio.

Paul S. Weiss
University of California, Los Angeles

Visit our free website for the nano-research community at www.ACSNanotation.org.

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Tags: ACS, nano


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Smartphone-Based Extension of the Curcumin/Cellophane pH Sensing Method

Pd/Ni Synergestic Activity for Hydrogen Oxidation Reaction in Alkaline Conditions

The potential use of cellophane test strips for the quick determination of food colours

pH and CO2 Sensing by Curcumin-Coloured Cellophane Test Strip

Polymeric Honeycombs Decorated by Nickel Nanoparticles

Directed Deposition of Nickel Nanoparticles Using Self-Assembled Organic Template,

Organometallic deposition of ultrasmooth nanoscale Ni film,

Zigzag-shaped nickel nanowires via organometallic template-free route

Surface analytical characterization of passive iron surface modified by alkyl-phosphonic acid layers

Atomic Force Microscopy Studies of Alkyl-Phosphonate SAMs on Mica

Amorphous iron formation due to low energy heavy ion implantation in evaporated 57Fe thin films

Surface modification of passive iron by alkylphosphonic acid layers

Formation and structure of alkylphosphonic acid layers on passive iron

Structure of the nonionic surfactant triethoxy monooctylether C8E3 adsorbed at the free water surface, as seen from surface tension measurements and Monte Carlo simulations

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