Electrochemical carbon dioxide conversion at ambient temperature is an efficient route to synchronously provide a continuous power supply and produce useful chemicals such as carbonates. Rigid catalysts with rational morphological and structural design are used to overcome the sluggish reaction kinetics and contribute to a better cycle life in Li-CO2 batteries. In this report, a two-dimensional Ti3C2Tx MXene/carbon heterostructure assembled parallel-Aligned tubular architecture was delicately synthesized through a self-sacrificial templating method and delivered an ultralow overpotential of 1.38 V at 0.2 A·g-1. The heterostructure that inherited the high catalytic performance of Ti3C2Tx MXene and the outstanding stability of carbon material...
Newly designed all-electrochem-active thick electrode (similar to 500 mu m) with dual-continuous int...
To achieve uniform carbon coating on TiO2 nanomaterials, high temperature (>500 °C) annealing treatm...
Lithium–carbon dioxide (Li–CO2) batteries have garnered significant interest over the past 5 years a...
Lithium-CO2 batteries are recognized as an essential strategy for efficient carbon sequestration and...
Engineering hierarchical structures of electrode materials is a powerful strategy for optimizing the...
Li-CO2 batteries are one type of promising energy storage and conversion devices to capture and util...
Engineering hierarchical structures of electrode materials is a powerful strategy for optimizing the...
Mesoporous three-dimensional (3D) TiO2/carbon nanotube conductive hybrid nanostructures can be succe...
The rechargeable Li-CO2 battery is a novel and promising energy storage system with the capability o...
The structure and catalytic activity of the oxygen electrode determine the overall electrochemical p...
The hierarchically structured cathode material Li1.165Mn0.501Ni0.167Co0.167O2 (LMNCO) is successfull...
IIn this dissertation, noble metal-free cathode and electrolyte materials are developed to improve t...
This work reports a two-step method to synthesize carbon-supported ultrathin anatase TiO₂ nanosheets...
Recently, considerable efforts of specialists in the field of power sources are aimed at research on...
The understanding of the influence of hierarchically nanostructured architectures as support materia...
Newly designed all-electrochem-active thick electrode (similar to 500 mu m) with dual-continuous int...
To achieve uniform carbon coating on TiO2 nanomaterials, high temperature (>500 °C) annealing treatm...
Lithium–carbon dioxide (Li–CO2) batteries have garnered significant interest over the past 5 years a...
Lithium-CO2 batteries are recognized as an essential strategy for efficient carbon sequestration and...
Engineering hierarchical structures of electrode materials is a powerful strategy for optimizing the...
Li-CO2 batteries are one type of promising energy storage and conversion devices to capture and util...
Engineering hierarchical structures of electrode materials is a powerful strategy for optimizing the...
Mesoporous three-dimensional (3D) TiO2/carbon nanotube conductive hybrid nanostructures can be succe...
The rechargeable Li-CO2 battery is a novel and promising energy storage system with the capability o...
The structure and catalytic activity of the oxygen electrode determine the overall electrochemical p...
The hierarchically structured cathode material Li1.165Mn0.501Ni0.167Co0.167O2 (LMNCO) is successfull...
IIn this dissertation, noble metal-free cathode and electrolyte materials are developed to improve t...
This work reports a two-step method to synthesize carbon-supported ultrathin anatase TiO₂ nanosheets...
Recently, considerable efforts of specialists in the field of power sources are aimed at research on...
The understanding of the influence of hierarchically nanostructured architectures as support materia...
Newly designed all-electrochem-active thick electrode (similar to 500 mu m) with dual-continuous int...
To achieve uniform carbon coating on TiO2 nanomaterials, high temperature (>500 °C) annealing treatm...
Lithium–carbon dioxide (Li–CO2) batteries have garnered significant interest over the past 5 years a...