A lithium-iodine (Li-I-2) cell using the triiodide/iodide (I-3(-)/I-) rcdox couple in an aqueous cathode has superior gravimetric and volumetric energy densities (similar to 330 W h kg(-1) and similar to 650 W h L-1, respectively, from saturated I-2 in an aqueous cathode) to the reported aqueous Li-ion batteries and aqueous cathode-type batteries, which provides an opportunity to construct cost-effective and high-performance energy storage. To apply this I-3(-)/I- aqueous cathode for a portable and compact 3.5 V battery, unlike for grid-scale storage as general target of redox flow batteries, we use a three-dimensional and millimeter thick carbon nanotube current collector for the I-3(-)/I- redox reaction, which can shorten the diffusion le...
Rechargeable iodine conversion batteries possess promising prospects for portable energy storage wit...
Rechargeable lithium–iodine batteries with abundant raw materials and low cost are promising electro...
Redox flow batteries (RFBs) have been extensively investigated because of their great operation flex...
A lithium−iodine (Li−I2) cell using the triiodide/iodide (I3−/I−) redox couple in an aqueous cathode...
A lithium–iodine (Li–I<sub>2</sub>) cell using the triiodide/iodide (I<sub>3</sub><sup>–</sup>/I<sup...
Rechargeable Li-iodine batteries are attractive electrochemical energy storage systems because iodin...
Aqueous redox flow batteries using low-cost organic and inorganic active materials have received gro...
A redox flow lithium battery (RFLB) has decoupled energy storage and power generation units like a c...
Energy storage devices that can deliver high powers have many applications, including hybrid vehicle...
© 2018 The Royal Society of Chemistry. Rechargeable multivalent ion (Al3+, Mg2+ and Zn2+) batteries ...
A new hybrid electrochemical cell incorporating aligned titania nanotubes (ATNTs) as the anode and o...
A single-electron transfer mode coupled with the shuttle behavior of organic iodine batteries result...
Achieving the high theoretical energy density (similar to 3500 W h kg(-1)) of Li-O-2 batteries invol...
A new hybrid electrochemical cell incorporating aligned titania nanotubes (ATNTs) as the anode and o...
We prepared iodine molecules encapsulated in single-walled carbon nanotubes (I@SWCNTs) by electro-ox...
Rechargeable iodine conversion batteries possess promising prospects for portable energy storage wit...
Rechargeable lithium–iodine batteries with abundant raw materials and low cost are promising electro...
Redox flow batteries (RFBs) have been extensively investigated because of their great operation flex...
A lithium−iodine (Li−I2) cell using the triiodide/iodide (I3−/I−) redox couple in an aqueous cathode...
A lithium–iodine (Li–I<sub>2</sub>) cell using the triiodide/iodide (I<sub>3</sub><sup>–</sup>/I<sup...
Rechargeable Li-iodine batteries are attractive electrochemical energy storage systems because iodin...
Aqueous redox flow batteries using low-cost organic and inorganic active materials have received gro...
A redox flow lithium battery (RFLB) has decoupled energy storage and power generation units like a c...
Energy storage devices that can deliver high powers have many applications, including hybrid vehicle...
© 2018 The Royal Society of Chemistry. Rechargeable multivalent ion (Al3+, Mg2+ and Zn2+) batteries ...
A new hybrid electrochemical cell incorporating aligned titania nanotubes (ATNTs) as the anode and o...
A single-electron transfer mode coupled with the shuttle behavior of organic iodine batteries result...
Achieving the high theoretical energy density (similar to 3500 W h kg(-1)) of Li-O-2 batteries invol...
A new hybrid electrochemical cell incorporating aligned titania nanotubes (ATNTs) as the anode and o...
We prepared iodine molecules encapsulated in single-walled carbon nanotubes (I@SWCNTs) by electro-ox...
Rechargeable iodine conversion batteries possess promising prospects for portable energy storage wit...
Rechargeable lithium–iodine batteries with abundant raw materials and low cost are promising electro...
Redox flow batteries (RFBs) have been extensively investigated because of their great operation flex...