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Synthesis and enhancement of red UC luminescence properties of ordered hexagonal NaYF4:Yb3+/Er3+ nanowire arraysZHIJUN WANG; ZIBIAO LU; DONGCHENG RUAN et al.Applied surface science. 2014, Vol 320, pp 742-745, issn 0169-4332, 4 p.Article

Patterned procedure for template-synthesis and microstructural characterization of copper nanowiresGUOJUN SONG; XIAORU LI; YIQIAN WANG et al.Materials characterization. 2010, Vol 61, Num 3, pp 371-375, issn 1044-5803, 5 p.Article

Electroless synthesis of large scale Co-Zn-P nanowire arrays and the magnetic behaviourXIAOYOU YUAN; CHUNSHENG DU; GANG SUN et al.Applied surface science. 2007, Vol 253, Num 10, pp 4546-4549, issn 0169-4332, 4 p.Article

Electrodeposition of Cu nanowire arrays with a templateKONISHI, Y; MOTOYAMA, M; MATSUSHIMA, H et al.Journal of electroanalytical chemistry (1992). 2003, Vol 559, pp 149-153, issn 1572-6657, 5 p.Conference Paper

Highly controllable and reproducible ZnO nanowire arrays growth with focused ion beam and low-temperature hydrothermal methodKAIDI DIAO; JICHENG ZHANG; MINJIE ZHOU et al.Applied surface science. 2014, Vol 317, pp 220-225, issn 0169-4332, 6 p.Article

Magnetization Reversal of High Aspect Ratio Iron Nanowires Grown by ElectrodepositionQIN, X. F; DENG, C. H; LIU, Y et al.IEEE transactions on magnetics. 2012, Vol 48, Num 11, pp 3136-3139, issn 0018-9464, 4 p.Conference Paper

Field emission properties of carbon nanotubes grown on silicon nanowire arraysYUMING LIU; SHOUSHAN FAN.Solid state communications. 2005, Vol 133, Num 2, pp 131-134, issn 0038-1098, 4 p.Article

A chemical route to fabricate Lu2Si2O7:Ce3+ micro-column structured filmsHUA YANG; GUANGHUI LIU; QI LU et al.Applied surface science. 2014, Vol 301, pp 323-328, issn 0169-4332, 6 p.Article

Fabrication and characterization of polycrystalline silicon nanowires with silver-assistance by electroless depositionXIANZHONG SUN; RAN TAO; LINHAN LIN et al.Applied surface science. 2011, Vol 257, Num 9, pp 3861-3866, issn 0169-4332, 6 p.Article

Magnetic Properties of Electrodeposited FeGa/CoFeB Multilayered Films and Nanowire ArraysLUPU, Nicoleta; PASCARIU, Petronela; GHERASIM, Carmen et al.IEEE transactions on magnetics. 2008, Vol 44, Num 11, pp 3005-3008, issn 0018-9464, 4 p., 1Conference Paper

Effects of growth substrates on the morphologies of TiO2 nanowire arrays and the performance of assembled UV detectorsGUOHUA LIU; MIN ZHANG; DEZHONG ZHANG et al.Applied surface science. 2014, Vol 315, pp 55-58, issn 0169-4332, 4 p.Article

Preparation of polyaniline nanowire arrayed electrodes for electrochemical supercapacitorsZHAO, Guang-Yu; LI, Hu-Lin.Microporous and mesoporous materials. 2008, Vol 110, Num 2-3, pp 590-594, issn 1387-1811, 5 p.Article

Direct electrochemistry of hemoglobin in gold nanowire arrayMINGHUI YANG; FENGLI QU; YONGJUN LI et al.Biosensors & bioelectronics. 2007, Vol 23, Num 3, pp 414-420, issn 0956-5663, 7 p.Article

Preparation, structure and photo-catalytic performances of hybrid Bi2SiO5 modified Si nanowire arraysXIANG FENG; XIANG QI; JUN LI et al.Applied surface science. 2011, Vol 257, Num 13, pp 5571-5575, issn 0169-4332, 5 p.Article

One-dimensional coaxial nanowire solar cellXIA NI; QI XU; SUO BAI et al.International journal of nanoparticles (Print). 2011, Vol 4, Num 2-3, pp 184-199, issn 1753-2507, 16 p.Article

The effect of diameter on micro-magnetic properties of Fe0.68Ni0.32 nanowire arraysLIU, Q. F; WANG, J. B; YAN, Z. J et al.Journal of magnetism and magnetic materials. 2004, Vol 278, Num 3, pp 323-327, issn 0304-8853, 5 p.Article

Template-assisted electrodeposition of indium-antimony nanowires - Comparison of electrochemical methodsHNIDA, Katarzyna; MECH, Justyna; SULKA, Grzegorz D et al.Applied surface science. 2013, Vol 287, pp 252-256, issn 0169-4332, 5 p.Article

Synthesis and field-emission properties of the tungsten oxide nanowire arraysKAI HUANG; QINGTAO PAN; FENG YANG et al.Physica. E, low-dimentional systems and nanostructures. 2007, Vol 39, Num 2, pp 219-222, issn 1386-9477, 4 p.Article

Raman scattering and luminescence study on arrays of ZnO doped with Tb3+LEI YANG; YUANHONG TANG; AIPING HU et al.Physica. B, Condensed matter. 2008, Vol 403, Num 13-16, pp 2230-2234, issn 0921-4526, 5 p.Article

Facile route to high-density, ordered ZnO nanowire arrays and their photoluminescence propertiesWEI CHEN; XIAOMING TAO; YUYANG LIU et al.Applied surface science. 2006, Vol 252, Num 24, pp 8683-8687, issn 0169-4332, 5 p.Article

Transverse magnetic anisotropy of magnetoelastic origin induced in Co nanowiresSILVA, E. L; NUNES, W. C; KNOBEL, M et al.Physica. B, Condensed matter. 2006, Vol 384, Num 1-2, pp 22-24, issn 0921-4526, 3 p.Conference Paper

Fabrication of integrated arrays of ultrahigh density magnetic nanowires on glass by anodization and electrodepositionCHU, S. Z; INOUE, S; WADA, K et al.Electrochimica acta. 2005, Vol 51, Num 5, pp 820-826, issn 0013-4686, 7 p.Conference Paper

Enhancing Ni―Sn nanowire lithium-ion anode performance by tailoring active/inactive material interfacesMIAO TIAN; WEI WANG; LEE, Se-Hee et al.Journal of power sources (Print). 2011, Vol 196, Num 23, pp 10207-10212, issn 0378-7753, 6 p.Article

WO3 and W2N nanowire arrays for photoelectrochemical hydrogen productionCHAKRAPANI, Vidhya; THANGALA, Jyothish; SUNKARA, Mahendra K et al.International journal of hydrogen energy. 2009, Vol 34, Num 22, pp 9050-9059, issn 0360-3199, 10 p.Article

Magnetic behaviour of densely packed hexagonal arrays of Ni nanowires : Influence of geometric characteristicsVAZQUEZ, M; PIROTA, K; TORREJON, J et al.Journal of magnetism and magnetic materials. 2005, Vol 294, Num 2, pp 174-181, issn 0304-8853, 8 p.Conference Paper

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