• image 01
    Volume 1, No.1, 2012
  • image 02
    Volume 1, No.2, 2012
  • image 01
    Volume 1, No.3, 2012
  • image 02
    Volume 2, No.1, 2013
  • image 02
    Volume 2, No.2, 2013
  • image 02
    Volume 2, No.S1, 2013
  • image 02
    Volume 2, No.3, 2013
  • image 02
    Volume 2, No.4, 2013
  • image 02
    Volume 3, No.1, 2014
  • image 02
    Volume 3, No.2, 2014
  • Volume 3, No3
    Volume 3, No.3, 2014
  • Volume 3, No4
    Volume 3, No.4, 2014
  • Volume 4, No1
    Volume 4, No.1, 2015
  • Volume 4, No2
    Volume 4, No.2, 2015
  • Volume 4, No3
    Volume 4, No.3, 2015
  • Volume 4, No4
    Volume 4, No.4, 2015
  • Volume 5, No1
    Volume 5, No.1, 2016
  • Login|Register
  • Total citations for the following article is (10) : Details of Citation

    Preparation and Characterization of Copper Oxide -Water Based Nanofluids by One Step Method for Heat Transfer Applications
    K. SHREE MEENAKSHI and E.PRADEEP JAYA SUDHAN
    Department of Chemistry, Loyola-ICAM College of Engineering and Technology, Chennai, Tamil Nadu, India
    Department of Chemistry, Anna University, Chennai, Tamil Nadu, India
    Department of Chemistry, Anna University, Chennai, Tamil Nadu, India
    Chem Sci Trans., 2015   |   DOI:10.7598/cst2015.976    |    View Abstract | FullText    |   

    This article has been cited by :

    Ismat Zerin Luna et al.;    
    J. Chem. Eng. Chem. Res., Vol. 2, No. 5, 2015, pp. 607-615    | View at Journal site     | -   
    Issa M. El-Nahhal, et al.; "Synthesis and characterization of silica-, meso-silica- and their functionalized silica-coated copper oxide nanomaterials"   
    Journal of Sol-Gel Science and Technology, pp 1-11 First online: 13 April 2016    | View at Journal site     | ISI   
    S. Nallusamy, "Thermal Conductivity Analysis and Characterization of Copper Oxide Nanofluids through Different Techniques"   
    Journal of Nano Research, Vol. 40, pp. 105-112, 2016    | View at Journal site     | ISI   
    Hammad Younes, Mingyang Mao et al., Nanofluids: Key parameters to enhance thermal conductivity and its applications   
    Applied Thermal Engineering, 2022, Volume 207, 118202    | View at Journal site     | ISI   
    Mohammed Javed, Aabid Hussain Shaik et al., Synthesis of stable waste palm oil based CuO nanofluid for heat transfer applications   
    Heat and Mass Transfer, 2018, volume 54, pages 3739–3745    | View at Journal site     | ISI   
    Eman Yahya Gaballah,Thanaa Mohammed Borg &Elham Abdelmonem Mohamed, Hydroxypropyl chitosan nail lacquer of ciclopirox-PLGA nanocapsules for augmented in vitro nail plate absorption and onychomycosis treatment   
    Drug Delivery, 2022, Volume 29, Issue 1, Pages 3304-3316    | View at Journal site     | https://doi.org/10.1080/10717544.2022.2144543   
    Xueye Chen & Yao Chen, A review on modelling, simulation and experiment of thermal conductivity of nanofluids   
    International Journal of Environmental Analytical Chemistry, 2021, Volume 101, Issue 10, Pages 1347-1362    | View at Journal site     | ISI   
    A.Nagarajan, J.Sunil, R.A.Arul Raja and Kishor KumarSadasivuni, Chemical properties of garnet nanofluids   
    Materials Today: Proceedings, 2020, Volume 21, Pages 543-546    | View at Journal site     | ISI   
    Maryam Moridpour, Alireza Razeghizadeh and Vahdat Rafee, Synthesis and Experimental Study of the Effect of Volume Fraction and Temperature on Thermal Conductivity Coefficient of Copper Oxide-Water Nanofluid   
    Iranian Journal of Applied Physics, 2019, Volume 9, Issue 1, Pages 71-89    | View at Journal site     | ISI   
    Singh, Santoshkumar; Verma, Sujitkumar et al., Thermal Performance Enhancement of CuO-Paraffin Nano-Enhanced Phase Change Material   
    International Journal of Vehicle Structures & Systems (IJVSS), 2022, Vol. 14 Issue 3, p411-416    | View at Journal site     | ISI