Volume 16 (2025)
Volume 15 (2024)
Volume 14 (2023)
Volume 13 (2022)
Volume 12 (2021)
Volume 11 (2020)
Volume 10 (2019)
Volume 9 (2018)
Volume 8 (2017)
Volume 7 (2016)
Volume 6 (2015)
Volume 5 (2014)
Volume 4 (2013)
Volume 3 ( 2012)
Volume 2 (2011)
Volume 1 (2010)
Growth And Field Emission Properties Of Vertically-aligned ZnO Nanowire Array On Biaxially Textured Ni-W Substrate By Thermal Evaporation

Deepak Chhikara; K. M. K. Srivatsa; M. Senthil Kumar; Preetam Singh; Sourav Das; O. S. Panwar

Volume 6, Issue 10 , October 2015, , Pages 862-866

https://doi.org/10.5185/amlett.2015.5886

Abstract
  Vertically well aligned and highly dense ZnO nanowires (NWs) have been grown on biaxially textured Ni substrates by a simple thermal evaporation technique over a large area without using any catalyst. The grown ZnO NWs have crystallized in wurtzite hexagonal structure and have grown along [0001] direction. ...  Read More

Optimization Of Thickness Of Sb2Te3 Thin Film As Back Contact For CdTe Thin Film Solar Cells

Shailaja Jeetendra; Naveen C. Shivappa; Raghu Patel; Mahesh H. Matt

Volume 5, Issue 11 , November 2014, , Pages 639-644

https://doi.org/10.5185/amlett.2014.7589

Abstract
  Sb2Te3 thin films of different thickness ranging from 100 to 500 nm were prepared on glass substrate by thermal evaporation method. The effects of thickness on structural, optical and electrical properties of thin films were studied. XRD revealed that grain size increases from 1.1 to 98.7 nm with increase ...  Read More

Growth, Characterization And I-V characteristics Of Tin Oxide Nanowires

Anima Johari; M.C. Bhatnagar;Vikas Rana

Volume 3, Issue 6 , December 2012, , Pages 515-518

https://doi.org/10.5185/amlett.2012.icnano.251

Abstract
  One-dimensional wire shaped tin oxide (SnO2) nanostructures have been synthesized by thermal evaporation method. The growth of SnO2 nanostructure was carried out on gold catalyst layer coated silicon substrate. X-ray diffraction (XRD) results reveals that synthesized SnO2 nanowires have polycrystalline ...  Read More