1 |
An experimental investigation of forced convection heat transfer with novel microencapsulated phase change material slurries in a circular tube under constant heat flux Zhang GH, Cui GM, Dou BL, Wang ZL, Goula MA Energy Conversion and Management, 171, 699, 2018 |
2 |
Water-soluble Au-13 clusters protected by binary thiolates: Structural accommodation and the use for chemosensing Ding WH, Huang CQ, Guan LM, Liu XH, Luo ZX, Li WX Chemical Physics Letters, 676, 18, 2017 |
3 |
Numerical study of a novel miniature compound parabolic concentrating photovoltaic/thermal collector with microencapsulated phase change slurry Liu LK, Jia YT, Lin YX, Alva G, Fang GY Energy Conversion and Management, 153, 106, 2017 |
4 |
The effect of solvent polarity on second order hyperpolarizability of selected phthalocyanines complexes Derkowska-Zielinska B Molecular Crystals and Liquid Crystals, 639(1), 71, 2016 |
5 |
Need of accurate model prediction of variability of the concentration ratio for testing coherence among environmental quality objectives: A case study of polycyclic aromatic hydrocarbons Song JH, Kim DW, Kim H, Lee DS Journal of Hazardous Materials, 266, 34, 2014 |
6 |
Electronic effects at self-assembled 4,4'-thio-bis-benzenethiolate protected Au nanoparticles on p-GaAs (100) electrodes Enache M, Preda L, Negrila C, Lazarescu MF, Mercioniu I, Santos E, Anastasescu M, Dobrescu G, Lazarescu V Electrochimica Acta, 77, 8, 2012 |
7 |
Thermal and rheological properties of microencapsulated phase change materials Zhang GH, Zhao CY Renewable Energy, 36(11), 2959, 2011 |
8 |
Dependence of the third order nonlinear optical susceptibility on concentration and peripheral substituent of metallophthalocyanines Derkowska B, Wojdyla M, Bala W, Jaworowicz K, Karpierz M, Czaplicki R, Sahraoui B Molecular Crystals and Liquid Crystals, 485, 965, 2008 |
9 |
Device applications of self-assembled monolayers and monolayer-protected nanoclusters Aslam M, Chaki NK, Sharma J, Vijayamohanan K Current Applied Physics, 3(2-3), 115, 2003 |