Tailoring the internal structure of nanomaterials is an effective way to enhance their performance for a given application. Herein, a core-shell templated approach is demonstrated to fabricate carbon or carbon nanotube-supported hollow structured RuO2 nanoparticles as excellent electrode materials for supercapacitors. This strategy involves the synthesis of core shell Ag-Ru nanoparticles, and subsequent loading on carbon or carbon nanotube support. Then the Ag component is removed from the core region using saturated aqueous Na2S solution to generate hollow structured Ru nanoparticles on carbon or carbon nanotube support, which are then converted into RuO2 with intact hollow structure by thermal treatment in air. In particular, the as-prepa...
In this study, RuO2/Fullerene and RuO2/MWCNT nanocomposites were synthesized to use as an electroact...
A simple one-step microwave-assisted and temperature-controlled hydrothermal synthesis was applied t...
Hydrous ruthenium oxide (RuO2) and activated carbon (AC) denoted as RuO2/AC composite electrodes wer...
Engineering the internal structure and chemical composition of nanomaterials in a cost-effective way...
Engineering the internal structure and chemical composition of nanomaterials in a cost-effective way...
A novel type of ruthenium oxide (RuO2)-modified multi-walled carbon nanotube (MWNT) nanocomposite el...
We demonstrate a facile synthesis of hierarchically driven single crystalline ruthenium dioxide (RuO...
[[abstract]]Significant enhancement in supercapacitor performance has been achieved via a new RuO2 n...
A solvothermal strategy and a mutual oxidation-reduction approach are used to fabricate ruthenium ox...
© 2022 Elsevier LtdIt is of great importance to fabricate high-performance electrode materials via a...
In this rising field of portable electronics, all solid state thin film supercapacitors (ASSTFSs) ha...
We demonstrate a new strategy for the fabrication of supercapacitor electrodes possessing high mass ...
Reducing the particle size is a straightforward way to increase the specific surface area of rutheni...
In real life applications, supercapacitors (SCs) often can only be used as part of a hybrid system t...
© 2022 American Chemical Society. All rights reserved.Despite the increase in demand for deformable ...
In this study, RuO2/Fullerene and RuO2/MWCNT nanocomposites were synthesized to use as an electroact...
A simple one-step microwave-assisted and temperature-controlled hydrothermal synthesis was applied t...
Hydrous ruthenium oxide (RuO2) and activated carbon (AC) denoted as RuO2/AC composite electrodes wer...
Engineering the internal structure and chemical composition of nanomaterials in a cost-effective way...
Engineering the internal structure and chemical composition of nanomaterials in a cost-effective way...
A novel type of ruthenium oxide (RuO2)-modified multi-walled carbon nanotube (MWNT) nanocomposite el...
We demonstrate a facile synthesis of hierarchically driven single crystalline ruthenium dioxide (RuO...
[[abstract]]Significant enhancement in supercapacitor performance has been achieved via a new RuO2 n...
A solvothermal strategy and a mutual oxidation-reduction approach are used to fabricate ruthenium ox...
© 2022 Elsevier LtdIt is of great importance to fabricate high-performance electrode materials via a...
In this rising field of portable electronics, all solid state thin film supercapacitors (ASSTFSs) ha...
We demonstrate a new strategy for the fabrication of supercapacitor electrodes possessing high mass ...
Reducing the particle size is a straightforward way to increase the specific surface area of rutheni...
In real life applications, supercapacitors (SCs) often can only be used as part of a hybrid system t...
© 2022 American Chemical Society. All rights reserved.Despite the increase in demand for deformable ...
In this study, RuO2/Fullerene and RuO2/MWCNT nanocomposites were synthesized to use as an electroact...
A simple one-step microwave-assisted and temperature-controlled hydrothermal synthesis was applied t...
Hydrous ruthenium oxide (RuO2) and activated carbon (AC) denoted as RuO2/AC composite electrodes wer...