Since aluminium is one of the most widely available elements in Earth’s crust, developing rechargeable aluminium batteries offers an ideal opportunity to deliver cells with high energy-to-price ratios. Nevertheless, finding appropriate host electrodes for insertion of aluminium (complex) ions remains a fundamental challenge. Here, we demonstrate a strategy for designing active materials for rechargeable aluminium batteries. This strategy entails the use of redox-active triangular phenanthrenequinone-based macrocycles, which form layered superstructures resulting in the reversible insertion and extraction of a cationic aluminium complex. This architecture exhibits an outstanding electrochemical performance with a reversible capacity of 110 m...
P-type organic cathodes (p-OCs) hold great promise in aluminium-ion batteries (AIBs), however curren...
The main challenges to implement sustainable energy storage technologies are the utilization of eart...
Controlling the structure of graphene-based materials with improved ion intercalation and diffusivit...
Since aluminium is one of the most widely available elements in Earth’s crust, developing rechargeab...
Al metal-organic batteries are a perspective high-energy battery technology based on abundant materi...
Aluminum (Al) batteries are fundamentally a promising future post-Li battery technology. The recentl...
Rechargeable aluminium (Al) batteries (RABs) have long-been pursued due to the high sustainability a...
The main challenges to implement sustainable energy storage technologies are the utilisation of eart...
Contrary to early motivation, the majority of aluminium ion batteries developed to date do not utili...
One of the possible solutions to circumvent the sluggish kinetics, low capacity, and poor integri...
The growing demand for safe, sustainable and energy-dense energy storage devices has spurred intensi...
Rechargeable batteries based on aluminum are attractive alternatives to those based on conventional ...
Energy is one of the biggest challenges of the 21st century. Factors such as the decline in availabi...
Aluminium is one of the promising negative electrode materials for modern batteries. It is environme...
The emerging demand for electronic and transportation technologies has driven the development of rec...
P-type organic cathodes (p-OCs) hold great promise in aluminium-ion batteries (AIBs), however curren...
The main challenges to implement sustainable energy storage technologies are the utilization of eart...
Controlling the structure of graphene-based materials with improved ion intercalation and diffusivit...
Since aluminium is one of the most widely available elements in Earth’s crust, developing rechargeab...
Al metal-organic batteries are a perspective high-energy battery technology based on abundant materi...
Aluminum (Al) batteries are fundamentally a promising future post-Li battery technology. The recentl...
Rechargeable aluminium (Al) batteries (RABs) have long-been pursued due to the high sustainability a...
The main challenges to implement sustainable energy storage technologies are the utilisation of eart...
Contrary to early motivation, the majority of aluminium ion batteries developed to date do not utili...
One of the possible solutions to circumvent the sluggish kinetics, low capacity, and poor integri...
The growing demand for safe, sustainable and energy-dense energy storage devices has spurred intensi...
Rechargeable batteries based on aluminum are attractive alternatives to those based on conventional ...
Energy is one of the biggest challenges of the 21st century. Factors such as the decline in availabi...
Aluminium is one of the promising negative electrode materials for modern batteries. It is environme...
The emerging demand for electronic and transportation technologies has driven the development of rec...
P-type organic cathodes (p-OCs) hold great promise in aluminium-ion batteries (AIBs), however curren...
The main challenges to implement sustainable energy storage technologies are the utilization of eart...
Controlling the structure of graphene-based materials with improved ion intercalation and diffusivit...