Monocrystalline spinel nanotube fabrication based on the Kirkendall effect

scientific article published on 02 July 2006

Monocrystalline spinel nanotube fabrication based on the Kirkendall effect is …
instance of (P31):
scholarly articleQ13442814

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P6179Dimensions Publication ID1006222829
P356DOI10.1038/NMAT1673
P698PubMed publication ID16845423

P50authorMargit ZachariasQ55396980
Kornelius NielschQ56062473
Mato KnezQ79804910
P2093author name stringDietrich Hesse
Eckhard Pippel
Ulrich Gösele
Roland Scholz
Hong Jin Fan
P2860cites workSingle-crystal gallium nitride nanotubesQ34189678
Semiconductor nanowires: from self-organization to patterned growth.Q36694237
Single crystalline magnetite nanotubesQ43676926
Formation of hollow nanocrystals through the nanoscale Kirkendall effectQ46502027
Photoconductive cadmium sulfide hemicylindrical shell nanowire ensemblesQ46707697
Atomic layer deposition of transition metalsQ47372236
Noble-metal nanotubes (Pt, Pd, Ag) from lyotropic mixed-surfactant liquid-crystal templates.Q51728117
Thin solid films roll up into nanotubesQ56959812
Polymer Nanotubes by Wetting of Ordered Porous TemplatesQ62394201
A Template-Based Electrochemical Method for the Synthesis of Multisegmented Metallic NanotubesQ62676639
Arrays of vertically aligned and hexagonally arranged ZnO nanowires: a new template-directed approachQ62676640
Synthesis of Gallium-Filled Gallium Oxide–Zinc Oxide Composite Coaxial NanotubesQ63381766
Hydrothermal synthesis of perovskite nanotubesQ73071174
Advances in the Synthesis of Inorganic Nanotubes and Fullerene‐Like NanoparticlesQ79256188
Microemulsion-based synthesis of titanium phosphate nanotubes via amine extraction systemQ80361454
Nanoscale tubules in uranyl selenatesQ81258677
P433issue8
P921main subjectcondensed matter physicsQ214781
P304page(s)627-631
P577publication date2006-07-02
P1433published inNature MaterialsQ1998645
P1476titleMonocrystalline spinel nanotube fabrication based on the Kirkendall effect
P478volume5

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