Our society’s most pressing challenges, like high CO2 emission and the constant battle against energy poverty, require a clean and easier solution to store and utilize the renewable energy resources. However, recent electrochemical components are expensive and harmful to the environment, which restricts their widespread deployment. This study proposes an easy method to synthesize and fabricate composite membranes with abundantly found biomass lignin polymer to replace conventional costly and toxic electrode materials. Easier manipulation of lignin within the polymeric matrix could provide the improved composite to enhance its electrochemical activity. Our major focus is to activate the quinone moiety via oxidation in the polymeric mixture u...
Lignin is one of the most abundant biopolymers on earth, constituting approximately 30% of the dry w...
Lignin is a biopolymer that can be found as the main component of plants. It is obtained as a coprod...
The key figure-of-merit for materials in stationary energy storage applications, such as large-scale...
Copyright © 2021 The Author(s). Electrochemical energy storage with lignin-based composite electrode...
The use of biomass as a viable, renewable feedstock for the production of energy and as a surrogate ...
In the quest for sustainable materials for quasi-solid-state (QS) electrolytes in aqueous dye-sensit...
Powering the future, while maintaining a cleaner environment and a strong socioeconomic growth, is g...
Lignin is an eco-friendly, low-cost, and abundant natural biopolymer. However, few studies have expl...
Currently there is an urgent need to reduce the use of fossil fuels, and efficient sustainable energ...
Proton exchange membrane fuel cells, rechargeable Li-/Na-ion batteries (LIBs), redox flow batteries,...
The development of new, scalable and inexpensive materials for low-cost and sustainable energy stora...
Lignin is a promising material to be used in sustainable energy storage devices. It may act as activ...
The use of earth abundant and renewable materials is encouraging for the future development of envir...
Proton-coupled multielectron transfer reactions are of great abundance in Nature. In particular, two...
Herein, we present a multigram scale-up route for the preparation of novel polymer composite nanopar...
Lignin is one of the most abundant biopolymers on earth, constituting approximately 30% of the dry w...
Lignin is a biopolymer that can be found as the main component of plants. It is obtained as a coprod...
The key figure-of-merit for materials in stationary energy storage applications, such as large-scale...
Copyright © 2021 The Author(s). Electrochemical energy storage with lignin-based composite electrode...
The use of biomass as a viable, renewable feedstock for the production of energy and as a surrogate ...
In the quest for sustainable materials for quasi-solid-state (QS) electrolytes in aqueous dye-sensit...
Powering the future, while maintaining a cleaner environment and a strong socioeconomic growth, is g...
Lignin is an eco-friendly, low-cost, and abundant natural biopolymer. However, few studies have expl...
Currently there is an urgent need to reduce the use of fossil fuels, and efficient sustainable energ...
Proton exchange membrane fuel cells, rechargeable Li-/Na-ion batteries (LIBs), redox flow batteries,...
The development of new, scalable and inexpensive materials for low-cost and sustainable energy stora...
Lignin is a promising material to be used in sustainable energy storage devices. It may act as activ...
The use of earth abundant and renewable materials is encouraging for the future development of envir...
Proton-coupled multielectron transfer reactions are of great abundance in Nature. In particular, two...
Herein, we present a multigram scale-up route for the preparation of novel polymer composite nanopar...
Lignin is one of the most abundant biopolymers on earth, constituting approximately 30% of the dry w...
Lignin is a biopolymer that can be found as the main component of plants. It is obtained as a coprod...
The key figure-of-merit for materials in stationary energy storage applications, such as large-scale...