【摘 要】
:
Li-ion batteries (LIBs) and Supercapacitors (SCs) stand at opposite ends of the spectrum in terms of their power and energy densities [1].And hybrid supercapaci
【机 构】
:
KeyLaboratoryofFunctionalPolymerMaterialsandCentreforNanoscaleScienceandTechnologyInstituteofPolymer
【出 处】
:
第三届纳米化学前沿论坛(Frontiers of Nanochemistry-2013)
论文部分内容阅读
Li-ion batteries (LIBs) and Supercapacitors (SCs) stand at opposite ends of the spectrum in terms of their power and energy densities [1].And hybrid supercapacitors, which combine two different types of electrodes (electrochemical double layer capacitors (EDLCs) electrode of SCs and faradaic electrode of battery), can improve energy density of energy-storage devices without reduce its power density remarkably and partly solve the contradictory problem [2].
其他文献
Since their discovery by Iijima in 1991,[1] carbon nanotubes (CNTs) have attracted enormous attention based on the unique structural, thermal, mechanical and el
Driven by the novel applications of functional nanostructured materials in the catalysis, electronics, photonics, and biotechnology fields, a great deal of effo
Recent research in single-walled carbon nanotubes (SWNT)-based thin-film field-effect transistors (TFTs) has witnessed remarkable evolution as a result of combi
Three-dimensional hierarchical nanostructure with conductive scaffold and active material coating has attracted much attention in energy conversion and storage
Transparent carbon nanotube films was directly drawn out of CVD system and assembled into fibers and macro films (cloth).Compared with the other methods, it is
Fabrication of graphene with controllable morphologies is crucial to widen their potential application in electronic and optical devices because the morphology
Intelligent materials, which can take energy from the environment and change their shape or volume, have continued to grab considerable attention of both scient
Graphene has attracted many scientific workers owing to its unique properties since it was discovered and many excellent works has been developed.Fiber made fro
Bimetallic nanocrystals have received considerable interest owing to their unique properties and potential applications in photonics, electronics, catalysis, se
Nowadays, portable electronic devices are becoming more and more demanding for multifunctional energy storage devices being small, thin, lightweight, and flexib