The Journal of Physical Chemistry C · 2012 · 99 citations · 35 references
EngineeringAmbient Nh3Facile SynthesisNanostructuresSolid NanorodsChemistryChemical EngineeringSodium BatteryMaterials ScienceNanotechnologyElectrochemical Power SourceEnergy StorageSolid-state BatteryZno NanotubesNanomaterialsMetal AnodeUltrathin Zno NanotubesElectrochemical Energy StorageBatteriesSealed Layouts
We report a new facile route to synthesize the ZnO nanotubes by thermal annealing of solid nanorods in ambient NH3. The unique characteristic of this approach allows achievement of ultrathin nanotubes with well-organized hexagonal nanowalls and sealed layouts. On the basis of our experimental observations, we developed a nanotube formation mechanism illustrating the following: (i) energetically active nanorod surfaces could be readily passivated to form a few-atoms-thick Zn3N2 layer and (ii) nanopores generated from the seed layer were extended to the inside of nanorod bottoms and then propagated upward until they reached the tops of the nanorods. On the basis of key features of these tubular structures, we assessed the electrochemical performance of the nanotubes as anode materials in lithium ion batteries, demonstrating significant improvements in cycling performance over counterparts made of solid nanostructures.
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Nanowire dye-sensitized solar cells
Matt Law, Lori E. Greene, Justin C. Johnson et al. · Nature Materials · 2005 · 5.3K citations
Engineering, Organic Solar Cell, Photo-electrochemical Cell +4
Arrays of Sealed Silicon Nanotubes As Anodes for Lithium Ion Batteries
Taeseup Song, Jianliang Xia, Jin-Hyon Lee et al. · Nano Letters · 2010 · 879 citations