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2009
Golberg D., Costa P.M.F.J., Mitome M., Bando Y. ¡°Properties and engineering of individual inorganic nanotubes in a transmission electron microscope¡±, J. Mater. Chem. 19, 909-920 (2009); Feature Article.

Costa P.M.F.J., Gautam U., Wang M.S., Bando Y., Golberg D. ¡°Effect of crystalline filling on the mechanical response of carbon nanotubes¡±, Carbon 47, 541-544 (2009).

Costa P.M.F.J., Fan X.S., Wang S., He Y.H., Bando Y., Mitome M., Zou J., Huang H., Golberg D. ¡°Two-probe electrical measurements in transmission electron microscopes ¨C behavioral control of tungsten microwires¡±, J. Micros. Res. & Tech. 72(2), 93-100 (2009).

Rodriguez-Manzo J.A., Banhart F., Terrones M., Terrones H., Grobert N., Ajayan P.M., Sumpter B.G., Meunier V., Wang M.S., Bando Y., Golberg D. ¡°Heterojunctions between metals and carbon nanotubes as ultimate nanocontacts¡±, Proc. Natl. Acad. Sci. 106, 4591-4595 (2009).

Hu J.Q., Bando Y., Golberg D. ¡°Novel semiconductor nanowire heterostructures: synthesis, analysis, properties and applications¡±, J. Mater. Chem. 19(3), 330-343 (2008); Journal Issue Cover Image Paper; Top 10 cited Papers of 01/2009.

Liu B.D., Bando Y., Wang M.S., Tang C.C., Mitome M., Golberg D. ¡°Crystallography and elasticity of individual GaN nanotube¡±, Nanotechnology 20(18), 185705 (2009).

Xu Z., Golberg D., Bando Y. ¡°In-situ TEM-STM recorded kinetics of boron nitride nanotube failure under current flow¡±, Nano Lett. 9(6), 2251-2254 (2009).

Gautam U.K., Panchakarla L.S., Dierre B., Fang X.S., Sekiguchi T., Bando Y., Golberg D., Rao C.N.R. ¡°Solvothermal synthesis, cathodoluminescence and field-emission properties of pure and N-doped ZnO nanobullets¡±, Adv. Funct. Mater. 19, 131-140 (2009).

Huang Y., Bando Y., Tang C.C., Zhi C.Y., Terao T., Sekiguchi T., Golberg D. ¡°Synthesis of well-structured BN microtubes with ultra-thin walls¡±, Nanotechnology 20, 085705-1-7 (2009).
4Â¥2009-11-25 19:35:28
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Shen G.Z., Bando Y., Golberg D. ¡°Fabrication of core/shell Ge/SiO2 and Ge/CdS nanospheres¡°, J. Nanosci. & Nanotech. 9, 572-576 (2009).

Zhi C.Y., Bando Y., Wang W.L., Tang C.C., Kuwahara K., Golberg D. ¡°Mechanical and thermal properties of polymethyl methacrylate-BN nanotube composites¡±, J. Nanomaterials, Art. 642036 (2009).

Huang Y., Wang Z.L., Wang Q., Gu C.Z., Tang C.C., Bando Y., Golberg D. ¡°Quasi-aligned Ga2O3 nanowires grown on brass wire meshes and their electrical and field-emission properties¡±, J. Phys. Chem. C.113(5), 1980-1983 (2009).
Hu J.Q., Jiang H., Chen Z., Sun Y., Bando Y., Sekiguchi T., Golberg D. ¡°Uniform, thin and continuous graphitic carbon tubular coatings on CdS nanowires¡±, J. Mater. Chem. 19, 1093-1097 (2009).

Zhai T.Y., Fang X.S., Bando Y., Liao Q., Xu X.J., Zeng H., Ma Y., Yao J.N., Golberg D. ¡°Morphology-dependent stimulated emission and field-emission of ordered CdS nanostructure arrays¡±, ASC Nano 3(4), 949-959 (2009); ACS Nano Web Highlight.

Hu J.Q., Chen Z.G., Jiang H. Sun Y.G., Bando Y., Golberg D. ¡±Rectangular or square, tapered and single-crystal PbTe nanotubes¡±, J. Mater. Chem. 19, 3063-3067 (2009).

Fang X.S., Bando Y., Liao M.Y., Gautam U.K., Zhi C.Y., Dierre B., Sekiguchi T., Koide Y., Golberg D. ¡°Single-crystalline ZnS nanobelts as ultraviolet-light (UV) sensors¡±, Adv. Mater. 21(20), 2034-2039 (2009); Journal Issue Cover Image Paper.

Liu B.D., Bando Y., Liao M.Y., Tang C.C., Mitome M., Golberg D. ¡°Bicrystalline ZnS microbelts¡±, Cryst. Growth & Des. 9(6) 2790-2793 (2009).

Wang S.L., He Y.H., Fang X.S., Zou J., Huang H., Wang Y., Costa P.M.F.J., Song M., Huang B.Y., Liu C.T., Liaw P.K., Bando Y., Golberg D. ¡°Structure and field-emission properties of sub-micrometer-sized tungsten-whisker arrays fabricated by vapor deposition¡±, Adv. Mater. 21(23), 2387-2392 (2009).

Gautam U.K., Bando Y., Bourgeois L., Fang X.S., Costa P.M.F.J., Zhan J.H., Golberg D. ¡°Synthesis of metal-semiconductor heterojunctions inside carbon nanotubes¡±, J. Mater. Chem. 19(25), 4414-4420 (2009); Journal Issue Cover Image Paper.

Zhi C.Y., Bando Y., Terao T., Tang C.C., Kuwahara H., Golberg D. ¡°Towards highly thermo-conductive electrically insulating polymeric composites with boron nitride nanotubes as fillers¡±, Adv. Funct. Mater. 19(12), 1857-1862 (2009); Journal Issue Cover Image Paper.

Zhi C.Y., Bando Y., Tang C.C., Kuwahara H., Golberg D. ¡±Large-scale fabrication of few-atomic-layer boron nitride nanosheets and their utilization in polymeric composites with improved thermal and mechanical properties¡±, Adv. Mater. 21(28), 2889-2893 (2009).

Zhai T.Y., Fang X.S., Bando Y., Dierre B., Liu B.D., Zeng H., Huang Y., Xu X.J., Yuan X., Sekiguchi T., Golberg D. ¡°Characterization, cathodoluminescence and field emission properties of morphology-tunable CdS micro/nanostructures¡±, Adv. Funct. Mater. 19(15), 2423-2430 (2009); Journal Issue Cover Image Paper.

Li Y., Fang X.S., Koshizaki N., Sasaki T., Li L., Gao S.Y., Shimizu Y., Bando Y., Golberg D. ¡°Periodic TiO2 nanorod arrays with hexagonal nonclose-packed arrangements: excellent field-emitters by parameter optimization¡±, Adv. Funct. Mater. 19(15), 2467-2773 (2009).

Terao T., Bando Y., Mitome M., Zhi C.Y., Tang C.C., Golberg D. ¡±Thermal conductivity improvement of polymer films by catechin-modified boron nitride nanotubes¡±, J. Phys. Chem. C 113, 13605-13609 (2009).

Liu B.D., Bando Y., Wang M.S., Zhi C.Y., Fang X.S., Tang C.C., Mitome M., Golberg D. ¡°Electron-beam irradiation induced conductivity in ZnS nanowires, as revealed by in-situ transmission electron microscope¡±, J. Appl. Phys. 106, 034302 (2009).

Thogersen A., Mayandi J., Finstad T., Olsen A., Diplas S., Mitome M., Bando Y. ¡°The formation of Er-oxide nanoclusters in SiO2 thin films with excess Si¡±, J. Appl. Phys. 106(1), 1014305 (2009).

Fang X.S., Bando Y., Gautam U.K., Zhai T., Gradecak S., Golberg D. ¡°Heterostructures and superlattices in one-dimensional nanoscale semiconductors¡±, J. Mater. Chem. 19(32), 5683-5689 (2009), Highlight Article.

Lin J., Huang Y., Tang C.C., Bando Y., Shi Y., Golberg D. ¡°Ferromagnetic Fe@CaS nanopeapods with BN insulating tubular sheets¡± J. Phys. Chem. C 113(33), 14818-14822 (2009).

Liu B.D., Bando Y., Dierre B., Sekiguchi T., Tang C.C., Mitome M., Golberg D. ¡°Synthesis, structure and cathodoluminescence of ellipsoid-shaped ZnGa2O4 nanorods¡±, Nanotechnology 20(36), 367705 (2009).

Juan M., Huang Q., Bando Y., Golberg D. ¡°Role of dimethyl sulfoxide in the hydrolytic peeling of boron nitride nanotubes¡±, J. Phys. Chem. C 113(35), 15565-15560 (2009).

Li C., Bando Y., Zhi C.Y., Huang Y., Golberg D. ¡°Thickness-dependent bending modulus of hexagonal boron nitride nanosheets¡±, Nanotechnology 20, 385707 (2009).

Costa P.M.F.J., Gautam U.K., Bando Y., Golberg D. ¡°Mechanical response of turbostratic carbon nanotubes filled with Ga-doped ZnS - Part I: Data processing for the extraction of elastic modulus with in-situ transmission electron microscope force sensors¡±, Nanotechnology 20, 405706 (2009).

Costa P.M.F.J., Cachim P.B., Gautam U.K., Bando Y., Golberg D. ¡°Mechanical response of turbostratic carbon nanotubes filled with Ga-doped ZnS - Part II: Slenderness ratio dependence of the mechanical response of turbostratic carbon nanotubes filled with Ga-doped ZnS¡±, Nanotechnology 20, 405707 (2009).

Costa P.M.F.J., Bando Y., Golberg D. ¡°Electrical and mechanical probing of nanostructures with transmission electron microscopy¡±, Proc. INCOMAM08, Microscopy & Microanalysis 15, suppl. 3, 47-48 (2009).



Ozawa H., Hirose K., Mitome M., Bando Y., Sata N., Ohishi Y., "Experimental study of reaction between perovskite and molten iron to 146 GPa and implications for chemically distinct buoyant layer at the top of the core." Phys. Chem. Miner. 36, 355-363 (2009).

Huang Q., Bando Y., Zhao L.P., Zhi C.Y., Golberg D. ¡°pH sensor based on boron nitride nanotube¡±, Nanotechnology 20(41), 415501 (2009).

Wang M.S., Golberg D., Bando Y. ¡°Interface dynamic behavior between carbon nanotube and metal electrode¡±, Adv. Mater. (2009); DOI:10.1002/adma.200, Advances in Advances Selected Paper.

Wang M.S., Bando Y., Rodriguez-Manzo J., Banhart F., Golberg D. ¡°Cobalt nanoparticle-assisted engineering of multiwall carbon nanotubes¡±, ACS Nano (2009), DOI: 10.1021/nn900634f.
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