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@NatureComms

Nature Communications

@NatureComms
Nature Communications is an open access journal publishing high-quality research in all areas of the biological, physical, chemical and Earth sciences.
London, Berlin, New York and Shanghai
nature.com/ncomms
Joined October 2010
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  • Pinned
    @NatureComms
    Nature Communications
    @NatureComms
    Mar 8, 2024
    Our Early Career Researchers (ECR) Co-Review Initiative ensures that #ECR are recognised for their contribution to peer-review and that they can get involved in peer-review alongside more experienced researchers. Learn more: nature.com/articles/s4146… nature.com/ncomms/for-rev…
    23
  • @NatureComms
    Nature Communications
    @NatureComms
    Sep 4
    Registration closes 10 September for the 5th Immuno-Metabolic Mechanisms of Atherosclerosis Conference in Playa del Carmen, Mexico. Join Senior Scientific Editor Laura Corradi at the upcoming @Fusion_Conf meeting! Register here: bit.ly/4xGP11M #IMMA
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  • @NatureComms
    Nature Communications
    @NatureComms
    Sep 3
    Editors often see studies that overstate impact which can undermine trust rather than build it. Our new Editorial argues limitations aren't a flaw to hide and should not be an afterthought. They're a strength to build research on, especially in Engineering
    nature.com
    Push until it breaks: engineering is stronger when we know its limits
    Nature Communications - Engineering and applied science papers too often stop at what succeeds. We ask authors to push their assumptions, methods, models, or devices until they falter, and to...
  • @NatureComms
    Nature Communications
    @NatureComms
    Aug 11
    Aqueous zinc batteries are promising for safe energy storage but suffer from low specific energy. Here, Liu et al. report a solid-solid interfacial conversion mechanism, achieving high zinc utilization across cell formats with a 4 e- Zn||I2 pouch cell delivering 116.8 Wh kg-1.
    2
  • @NatureComms
    Nature Communications
    @NatureComms
    Aug 11
    Aqueous zinc batteries lose capacity while resting, limiting their use for grid storage. Here, Wu et al. show that low zinc salt concentration electrolytes suppress zinc corrosion by reducing reactive solvated water and maintain long cycling stability.
    1
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