An ultralight, conductive, and flexible 3D assembly of a metal oxide nanowire aerogel as an electrode for energy storage devices without additives and typically inconvenient flexible supported-substrates remains a challenge. Herein, we report a new 3D highly ordered layer-by-layer stacking sodium titanate@reduced graphene oxide core-shell (NTO@GCS) nanowire aerogel that has an ultra-high aspect ratio with a diameter of 30-50 nm and typical length up to 100 μm for a new class of convenient sodium-ion battery (SIB) anodes. The formation mechanism of the unique 3D NTO nanowire aerogel, the precursor of the NTO@GCS aerogel, was carefully proposed, demonstrating that the key challenge for this synthesis strategy was to form a stable and homogene...
Three-dimensional (3D) transition metal oxides/reduced graphene oxide aerogels (TMOs/rGO-G) have rec...
Sodium has attracted an increasing amount of attention as an alternative element to lithium for ener...
Developing high-performance electrode materials with high energy and long-term cycling stability is ...
Sodium storage in both solid-liquid and solid-solid interfaces is expected to extend the horizon of ...
Graphene has been extensively investigated as anode material for Li and Na ion batteries due to its ...
Confined transformation of assembled two-dimensional MXene (titanium carbide) and reduced graphene o...
Smart construction of ultraflexible electrodes with superior gravimetric and volumetric capacities i...
Sodium metal batteries are recognized as promising candidates for next-generation energy storage dev...
With the alarming rate of fossil fuel consumption in the world, electrochemical energy storage techn...
Both nanoscale surface modification and structural control play significant roles in enhancing the e...
With the alarming rate of fossil fuel consumption in the world, electrochemical energy storage techn...
This is the publisher’s final pdf. The published article is copyrighted by the author(s) and publish...
Sodium metal batteries have potentially high energy densities, but severe sodium-dendrite growth and...
Sodium metal batteries have potentially high energy densities, but severe sodium-dendrite growth and...
A structured SnO2-reduced graphene oxide (RGO) nanocomposite has been synthesized with SnO2 nanopart...
Three-dimensional (3D) transition metal oxides/reduced graphene oxide aerogels (TMOs/rGO-G) have rec...
Sodium has attracted an increasing amount of attention as an alternative element to lithium for ener...
Developing high-performance electrode materials with high energy and long-term cycling stability is ...
Sodium storage in both solid-liquid and solid-solid interfaces is expected to extend the horizon of ...
Graphene has been extensively investigated as anode material for Li and Na ion batteries due to its ...
Confined transformation of assembled two-dimensional MXene (titanium carbide) and reduced graphene o...
Smart construction of ultraflexible electrodes with superior gravimetric and volumetric capacities i...
Sodium metal batteries are recognized as promising candidates for next-generation energy storage dev...
With the alarming rate of fossil fuel consumption in the world, electrochemical energy storage techn...
Both nanoscale surface modification and structural control play significant roles in enhancing the e...
With the alarming rate of fossil fuel consumption in the world, electrochemical energy storage techn...
This is the publisher’s final pdf. The published article is copyrighted by the author(s) and publish...
Sodium metal batteries have potentially high energy densities, but severe sodium-dendrite growth and...
Sodium metal batteries have potentially high energy densities, but severe sodium-dendrite growth and...
A structured SnO2-reduced graphene oxide (RGO) nanocomposite has been synthesized with SnO2 nanopart...
Three-dimensional (3D) transition metal oxides/reduced graphene oxide aerogels (TMOs/rGO-G) have rec...
Sodium has attracted an increasing amount of attention as an alternative element to lithium for ener...
Developing high-performance electrode materials with high energy and long-term cycling stability is ...