A hybrid supercapacitor consisting of a battery-type electrode and a capacitive electrode could exhibit dramatically enhanced energy density compared with a conventional electrical double-layer capacitor (EDLCs). However, advantages for EDLCs such as stable cycling performance will also be impaired with the introduction of transition metal-based species. Here, we introduce a facile hydrothermal procedure to prepare highly porous MOF-74-derived double hydroxide (denoted as MDH). The obtained 65%Ni-35%Co MDH (denoted as 65Ni-MDH) exhibited a high specific surface area of up to 299 m(2) g(-1). When tested in a three-electrode configuration, the 65Ni-MDH (875 C g(-1) at 1 A g(-1)) exhibited excellent cycling stability (90.1% capacity retention ...
© 2021 Elsevier. This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://...
Metal-organic frameworks (MOFs) composed by coordination bonds between metal ion with organic linker...
Electrode materials with high surface area, tailored pore size, and efficient capability for ion ins...
A new method based on one-step solvothermal reaction is demonstrated to synthesize ultrathin Ni–Co l...
Metal-organic frameworks (MOFs) have attracted significant research interest for supercapacitor appl...
A new method based on one-step solvothermal reaction is demonstrated to synthesize ultrathin Ni–Co l...
Supercapacitors offer superior energy storage capabilities than traditional capacitors, making them ...
This work reports a facile one-step method for the synthesis of new hybrid porous materials using bi...
To cater for the demands of electrochemical energy storage system, the development of cost effective...
Flexible electrodes for energy storage and conversion require a micro-nanomorphology and stable stru...
Transition metal-based layered double hydroxides (LDH) are attractive electrode materials for superc...
Here, we report a facile and easily scalable hydrothermal synthetic strategy to synthesize Ni–V laye...
Developing electrodes in a reasonable structure is essential to boost the performance of supercapaci...
There are many different ways that energy is used in daily life. From applications that require a hi...
A new nanoarchitecture approach based on metal-organic frameworks (MOF) is reported that can achieve...
© 2021 Elsevier. This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://...
Metal-organic frameworks (MOFs) composed by coordination bonds between metal ion with organic linker...
Electrode materials with high surface area, tailored pore size, and efficient capability for ion ins...
A new method based on one-step solvothermal reaction is demonstrated to synthesize ultrathin Ni–Co l...
Metal-organic frameworks (MOFs) have attracted significant research interest for supercapacitor appl...
A new method based on one-step solvothermal reaction is demonstrated to synthesize ultrathin Ni–Co l...
Supercapacitors offer superior energy storage capabilities than traditional capacitors, making them ...
This work reports a facile one-step method for the synthesis of new hybrid porous materials using bi...
To cater for the demands of electrochemical energy storage system, the development of cost effective...
Flexible electrodes for energy storage and conversion require a micro-nanomorphology and stable stru...
Transition metal-based layered double hydroxides (LDH) are attractive electrode materials for superc...
Here, we report a facile and easily scalable hydrothermal synthetic strategy to synthesize Ni–V laye...
Developing electrodes in a reasonable structure is essential to boost the performance of supercapaci...
There are many different ways that energy is used in daily life. From applications that require a hi...
A new nanoarchitecture approach based on metal-organic frameworks (MOF) is reported that can achieve...
© 2021 Elsevier. This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://...
Metal-organic frameworks (MOFs) composed by coordination bonds between metal ion with organic linker...
Electrode materials with high surface area, tailored pore size, and efficient capability for ion ins...