The obtaining of Hydrogen(H2),a clean and highly efficientenergy source,by utilizing the solar energy is one of the mostactive research fields for decades [1-5].
In-situ and real-time monitoring of trace water during electrochemical cycles are of vital importance because water impurity is one of the causes of reduced lifetime and capacity fading in Li-ion batt
Integrating the contradictory attributes of well-aligned pore structure and excellent electrical/mechanical properties into graphene-based macroscopic materials perfectly was still a big challenge hit
The structure-function of the electrocatalystsfor OER is in demand for future applications in watersplitting,which can provide an appropriate choice for the design of OER electrocatalysts.
By replacing the conventional lithium-based intercalation chemistry with highly exergonic conversion reaction,a step-change in energy density could be achieved for the resultant energy storage devices