【摘 要】
:
There is currently intense motivation to develop high specific energy batteries in large quantities for the electric/hybrid vehicle market and the electronics industry in general.
【机 构】
:
School of Chemistry and Molecular Biosciences,The University of Queensland Brisbane,Queensland 4072,
【出 处】
:
2013年能源颗粒前沿研讨会暨第三届全国能源颗粒材料学术研讨会
论文部分内容阅读
There is currently intense motivation to develop high specific energy batteries in large quantities for the electric/hybrid vehicle market and the electronics industry in general.
其他文献
The interaction of water with the (100) surface of the spinel cobalt oxide, Co3O4, were carried out by density functional theory calculations with on-site Coulomb repulsion U terms.
Lithium-sulfur batteries, with the high theoretical capacity density (~1675 mAh g-1) and energy density (~2600 Wh kg-1) as well as the easy access and non-toxic of raw materials, demonstrate a promisi
Three-dimensional (3D) hierarchical porous structures have attracted extensive attention owing to their versatile applications.Herein, 3D hierarchical porous MgO superstructures were successfully obta
There is increasing demand of high energy density lithium ion batteries (LIBs) for electric vehicles and renewable sources storage fields.
The use of nanoscale flexible mechanical energy storage devices, instead of traditional electrochemical energy storage devices based on supercapacitors and Li-ion batteries, is highly considered for p
当今世界,科技迅猛发展,自动化水平、智能化水平全面提升,人类对能源的需求也随之持续快速增长.在石油资源日益枯竭、成熟的新能源形态发展缓慢的背景之下,稠油资源作为石油资源中非常重要的组成部分,以其两倍于常规石油资源的储量,被认为是近期最有可能的接替资源.稠油开采技术作为重要的战略储备技术,也得到了各国研究者的普遍关注.
The high-end applications of single-walled carbon nanotubes (SWCNTs) was hindered by the existence of large amount of impurities, especially the graphene layers encapsulating metal nanoparticles (meta
We studied the growth kinetic characteristics of single-walled carbon nanotubes(SWNTs) and carbon encapsulated Fe nanoparticles(C@Fe) in the chemical vapor deposition process, using Fe/MgO catalyst an
Ultrafine Ni powders with special shape and high purity are increasingly required for specific uses in many technological areas, especially on sintered activators, hard metal adhesives, microwave abso
通过雾化反应法并在600-800℃煅烧后合成了具有介孔结构的二氧化锡微球.这种介孔二氧化锡微球为四方相,直径约为2.2 ~2.6微米,并包含直径为23.4~34.5纳米左右的介孔,其产生的比表面积高达46.9m2g-1.使用这种介孔二氧化锡微球作为染料敏化太阳能电池(DSSCs)光阳极散射层时,纳米TiO2被作为光阳极底层.电池性能测试表明二氧化锡微球层具有显著增强染料敏化太阳能电池光电转换效率的