most citedQuantifying the effect of electrical conductivity on the rate-performance of nanocomposite battery electrodes

2 citations · 6 across the 5 of their papers we have counts for

collaborators

5 papers

physics.app-ph2020

Limitations of Ordered Macroporous Battery Electrode Materials at High Charge and Discharge Rates

Sally O'Hanlon, David McNulty, Ruiyuan Tian +2

Adding porosity to battery electrodes is believed to be universally useful for adding space to accommodate volumetric expansion, electrolyte access to all active materials, helping…

physics.app-ph2019

Additive manufacturing for energy storage: Methods, designs and materials selection for customizable 3D printed batteries and supercapacitors

Umair Gulzar, Colm Glynn, Colm O'Dwyer

Additive manufacturing and 3D printing in particular have the potential to revolutionize existing fabrication processes where objects with complex structures and shapes can be buil…

eess.SP20192 cited

Energy Autonomous Wearable Sensors for Smart Healthcare: A Review

Abhishek Singh Dahiya, Jerome Thireau, Jamila Boudaden +17

Energy Autonomous Wearable Sensors (EAWS) have attracted a large interest due to their potential to provide reliable measurements and continuous bioelectric signals, which help to…

physics.chem-ph20192 cited

Quantifying the effect of electrical conductivity on the rate-performance of nanocomposite battery electrodes

Ruiyuan Tian, Nolito Alcala, Stephen JK ONeill +7

While it is well-known that electrode conductivity has a critical impact on rate-performance in battery electrodes, this relationship has been quantified only by computer simulatio…

physics.chem-ph20192 cited

Using chronoamperometry to rapidly measure and quantitatively analyse rate-performance in battery electrodes

Ruiyuan Tian, Paul J. King, Joao Coelho +5

For battery electrodes, measured capacity decays as charge/discharge current is increased. Such rate-performance is important from a practical perspective and is usually characteri…