Flexible supercapacitor: Overview and outlooks
Y Wang, X Wu, Y Han, T Li - Journal of Energy Storage, 2021 - Elsevier
Flexible supercapacitors have become research hotspot as the energy storage device to
power up the wearable and portable electronics due to their high specific capacitance and …
power up the wearable and portable electronics due to their high specific capacitance and …
Recent progress on phase engineering of nanomaterials
As a key structural parameter, phase depicts the arrangement of atoms in materials.
Normally, a nanomaterial exists in its thermodynamically stable crystal phase. With the …
Normally, a nanomaterial exists in its thermodynamically stable crystal phase. With the …
Construction of complex copper-cobalt selenide hollow structures as an attractive battery-type electrode material for hybrid supercapacitors
The application of battery-like electrode materials with complex hollow structures, huge
surface areas, and good redox properties is an appealing approach towards the boosting …
surface areas, and good redox properties is an appealing approach towards the boosting …
Integrated hybrid of graphitic carbon-encapsulated CuxO on multilayered mesoporous carbon from copper MOFs and polyaniline for asymmetric supercapacitor and …
Hybrid electrode materials composed of metal-organic framework (MOF)-derived oxides and
conducting polymers have abundant potential for energy applications. The energy storage …
conducting polymers have abundant potential for energy applications. The energy storage …
Co-MOF@ MXene-carbon nanofiber-based freestanding electrodes for a flexible and wearable quasi-solid-state supercapacitor
Freestanding and flexible electrodes are crucial for advancing flexible and wearable energy
storage devices (FW-ESD). However, the significant trade-off between mechanical flexibility …
storage devices (FW-ESD). However, the significant trade-off between mechanical flexibility …
Interface modulation induced by the 1T Co-WS2 shell nanosheet layer at the metallic NiTe2/Ni core–nanoskeleton: Glib electrode-kinetics for HER, OER, and ORR
The metallic (1T) transition metal dichalcogenides (TMDCs) are known for their superior
electrocatalytic performance, due to their high conductivity, active basal-planes, and …
electrocatalytic performance, due to their high conductivity, active basal-planes, and …
Wearable technologies enable high-performance textile supercapacitors with flexible, breathable and wearable characteristics for future energy storage
Flexible and wearable energy storage devices are expected to provide power support for the
burgeoning smart and portable electronics. In particular, textile substrate and wearable …
burgeoning smart and portable electronics. In particular, textile substrate and wearable …
A high-energy-density supercapacitor with multi-shelled nickel–manganese selenide hollow spheres as cathode and double-shell nickel–iron selenide hollow …
Thanks to the attractive structural characteristics and unique physicochemical properties,
mixed metal selenides (MMSes) can be considered as encouraging electrode materials for …
mixed metal selenides (MMSes) can be considered as encouraging electrode materials for …
Synchronous Surface‐Interface and Crystal‐Phase Engineered Multifaceted Hybrid Nanostructure of Fe‐(1T)‐VSe2 Nanosheet and Fe‐CoSe2 Nanorods Doped …
Two different nanostructures of two dissimilar highly‐potent active electrocatalysts, P‐
dopped metallic‐(1T)‐Fe‐VSe2 (P, Fe‐1T‐VSe2) nanosheet and P‐dopped Fe‐CoSe2 (P …
dopped metallic‐(1T)‐Fe‐VSe2 (P, Fe‐1T‐VSe2) nanosheet and P‐dopped Fe‐CoSe2 (P …
Fe and P doped 1T-phase enriched WS23D-dendritic nanostructures for efficient overall water splitting
Abstract 1T-WS 2 is known for its higher hydrogen evolution reaction (HER) performance
than 2H-WS 2. However, the lack of thermodynamic stability and absence of large-scale …
than 2H-WS 2. However, the lack of thermodynamic stability and absence of large-scale …