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3D Nanostructures Group ... Highly ordered ZnO nanotube arrays using atomic layer deposition 3. Attached UTAM + ZnO(ALD) 4. Connected UTAM + ZnO(ALD, On-chip grown) – PowerPoint PPT presentation

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Title: yong.lei@tu-ilmenau.de


1
3D Nanostructures Group Prof. Dr.
Yong Lei
yong.lei_at_tu-ilmenau.de
  • Introduction
  • Surface nano-patterning has been intensively
    investigated due to the wide applications in
    fabricating different nano-devices. There are
    fabrication and application restrictions for
    existing surface patterning techniques (EBL,
    self-assembly, SPM, and imprinting).
  • Therefore, the realization of a new surface
    nano-patterning with a process characterized by
    flexibility, high throughput, low cost and high
    structural controllability presents an important
    issue.
  • Recently, using a novel surface nano-patterning
    technique the UTAM (ultra-thin alumina masks)
    surface nano-patterning, large-scale ordered
    arrays of surface nano-structures (nanodots,
    nanoholes, nanowires, and nanotubes) were
    fabricated 1-6.

Result and Discussion
1. IDK ZnO(ALD)
2. UTAM ZnO(ALD)
3. Attached UTAM ZnO(ALD)
4. Connected UTAM ZnO(ALD, On-chip grown)
5. Conclusion and future work
Ultrathin alumina membranes for surface
nanopatterning in fabricating quantum-sized
nanodots 3
References 1. Lei Y., et al., Chem. Soc. Rev.,
40, 1247-1258 (2011). 2. Lei Y., Cai W.P., Wilde
G., Prog. Mater. Sci., 52, 465-539 (2007). 3. Wu
M.H., Wen L.Y., Lei Y., et al., Small, 6, 695-699
(2010). 4. Lei Y., Chim W.K., Chem. Mater., 17,
580 (2005). 5. Lei Y., Chim W.K., J. Am. Chem.
Soc., 127, 1487 (2005). 6. Lei Y., Chim W.K., Sun
H.P., Wilde G., Appl. Phys. Lett., 86, 103106
(2005).
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