Ring-opening metathesis polymerization (ROMP) of buckybowl corannulene-based oxa-norbornadiene monomer is shown to give rise to polymeric nanomaterials with an average pore size of about 1.4 nm and a surface area of 49.2 m<sup>2</sup>/g. Application in supercapacitor devices show that the corannulene-based nanomaterials exhibit a specific capacitance of 134 F·g<sup>–1</sup> (1.0 V voltage window) in a three-electrode cell configuration. Moreover, the electrode assembled from these materials in a symmetric configuration (1.6 V voltage window) exhibits long-term cyclability of 90% capacitance retention after undergoing 10000 cycles. This work demonstrates that ROMP is a valuable method in synthesizing nanostructured corannulene polymers, and ...
Methods are described for the preparation of fiber-like nanomaterials that mimic the multilayer stru...
This research is divided into two related topics. In the first topic, the synthesis and characteriza...
The focus of the current work is to develop a supercapacitor that has energy density which is compar...
Ring-opening metathesis polymerization (ROMP) of buckybowl corannulene-based oxa-norbornadiene monom...
The bowl-shaped polycyclic aromatic (C20H10) hydrocarbon, corannulene, constitutes a recognizable mo...
Corannulene group bearing copolymers have great potential in electrochemical storage applications. H...
Ternary composites as electrode materials have attracted extensive attention due to their excellent ...
The 21st century has been marked by an exponential increase in new and interconnected technologies a...
Electrochemical energy-storage devices have the potential to be clean and efficient, but their curre...
There are a number of strategies in molecular nanoscience to prepare stabilized magnetic nanocomposi...
Poly(1,5-diaminoanthraquinone) (PDAA) has attracted more interest because of its unique molecular st...
Porous organic polymers (POPs) have emerged as promising materials for electrochemical devices on ac...
textThe work reported herein describes efforts to create ring-opening metathesis block copolymers an...
Two-dimensional (2-D) polymer has properties that are attractive for energy storage applications bec...
Controlling the nanostructure of conjugated polymers is essential for their application to functiona...
Methods are described for the preparation of fiber-like nanomaterials that mimic the multilayer stru...
This research is divided into two related topics. In the first topic, the synthesis and characteriza...
The focus of the current work is to develop a supercapacitor that has energy density which is compar...
Ring-opening metathesis polymerization (ROMP) of buckybowl corannulene-based oxa-norbornadiene monom...
The bowl-shaped polycyclic aromatic (C20H10) hydrocarbon, corannulene, constitutes a recognizable mo...
Corannulene group bearing copolymers have great potential in electrochemical storage applications. H...
Ternary composites as electrode materials have attracted extensive attention due to their excellent ...
The 21st century has been marked by an exponential increase in new and interconnected technologies a...
Electrochemical energy-storage devices have the potential to be clean and efficient, but their curre...
There are a number of strategies in molecular nanoscience to prepare stabilized magnetic nanocomposi...
Poly(1,5-diaminoanthraquinone) (PDAA) has attracted more interest because of its unique molecular st...
Porous organic polymers (POPs) have emerged as promising materials for electrochemical devices on ac...
textThe work reported herein describes efforts to create ring-opening metathesis block copolymers an...
Two-dimensional (2-D) polymer has properties that are attractive for energy storage applications bec...
Controlling the nanostructure of conjugated polymers is essential for their application to functiona...
Methods are described for the preparation of fiber-like nanomaterials that mimic the multilayer stru...
This research is divided into two related topics. In the first topic, the synthesis and characteriza...
The focus of the current work is to develop a supercapacitor that has energy density which is compar...