Developing high-performance, flexible, transparent supercapacitors for wearable electronics represents an important challenge, as it requires active materials to be sufficiently transparent without compromising energy storage. Here, we manipulate the morphology of the active materials and the junctions on the current collector to achieve optimum electronic/ionic transport kinetics. Two-dimensional Co(OH)2 nanosheets with single or two layers were vertically aligned onto a modified Ag nanowires (AgNWs) network using an electrochemical deposition–UV irradiation approach. The metallic AgNWs network endows high transparency while minimizing the contact resistance with the pseudocapacitive Co(OH)2 nanosheets. The Co(OH)2 nanosheets self-assem...
Abstract There is ever increasing demand for flexible energy storage devices due to the development...
Supercapacitors have received considerable attention as energy storage devices owing to their high p...
We demonstrate the design and fabrication of a Ag/PEDOT:PSS/MnO2 layer by layer structure for high p...
Stretchable and transparent electronics have steadily attracted huge attention in wearable devices. ...
Stretchable and transparent electronics have steadily attracted huge attention in wearable devices. ...
Ultralong silver nanowires (Ag NWs) are preferred for enabling transparent conductive networks with ...
We present a new hybrid material composed of molybdenum (IV) oxide (MoO2) shell on highly conducting...
Transparent and stretchable Ag–Ni and Ag–Fe core–shell nanowire networks were fabricated as a cathod...
A highly flexible supercapacitor is fabricated through a simple solution-based method in which confo...
We have synthesized the hybrid supercapacitor electrode of Co<sub>3</sub>O<sub>4</sub> nanoparticles...
Silver nanowires (Ag NWs) are appealing candidates for supercapacitor electrodes due to their high c...
Cobalt oxide (CoOx) nanowires have been broadly explored as advanced pseudocapacitive materials owin...
We demonstrate the design and fabrication of a Ag/PEDOT:PSS/MnO2 layer by layer structure for high p...
Abstract A flexible wearable electrode consisting of nickel–cobalt sulfide (NCS) nanowires was fabri...
Thin-film supercapacitors are promising candidates for energy storage in wearable electronics due to...
Abstract There is ever increasing demand for flexible energy storage devices due to the development...
Supercapacitors have received considerable attention as energy storage devices owing to their high p...
We demonstrate the design and fabrication of a Ag/PEDOT:PSS/MnO2 layer by layer structure for high p...
Stretchable and transparent electronics have steadily attracted huge attention in wearable devices. ...
Stretchable and transparent electronics have steadily attracted huge attention in wearable devices. ...
Ultralong silver nanowires (Ag NWs) are preferred for enabling transparent conductive networks with ...
We present a new hybrid material composed of molybdenum (IV) oxide (MoO2) shell on highly conducting...
Transparent and stretchable Ag–Ni and Ag–Fe core–shell nanowire networks were fabricated as a cathod...
A highly flexible supercapacitor is fabricated through a simple solution-based method in which confo...
We have synthesized the hybrid supercapacitor electrode of Co<sub>3</sub>O<sub>4</sub> nanoparticles...
Silver nanowires (Ag NWs) are appealing candidates for supercapacitor electrodes due to their high c...
Cobalt oxide (CoOx) nanowires have been broadly explored as advanced pseudocapacitive materials owin...
We demonstrate the design and fabrication of a Ag/PEDOT:PSS/MnO2 layer by layer structure for high p...
Abstract A flexible wearable electrode consisting of nickel–cobalt sulfide (NCS) nanowires was fabri...
Thin-film supercapacitors are promising candidates for energy storage in wearable electronics due to...
Abstract There is ever increasing demand for flexible energy storage devices due to the development...
Supercapacitors have received considerable attention as energy storage devices owing to their high p...
We demonstrate the design and fabrication of a Ag/PEDOT:PSS/MnO2 layer by layer structure for high p...