1 |
Facile fabrication of 3D graphene-multi walled carbon nanotubes network and its use as a platform for natamycin detection Yang XP, Yu X, Heng Y, Wang F Journal of Electroanalytical Chemistry, 816, 54, 2018 |
2 |
A rapid, green and controllable method to fabricate the electrodeposition of a film of reduced graphene oxide as sensing materials for the determination of matrine Yan L, Yu X, Zhao CL, Wang LW, Wang F Journal of Electroanalytical Chemistry, 738, 138, 2015 |
3 |
A simple, rapid and green method based on pulsed potentiostatic electrodeposition of reduced graphene oxide on glass carbon electrode for sensitive voltammetric detection of sophoridine Wang F, Wu YJ, Lu K, Gao L, Ye BX Electrochimica Acta, 141, 82, 2014 |
4 |
Pulse potentiostatic electropolymerization of high performance PEDOT counter electrodes for Pt-free dye-sensitized solar cells Xiao YM, Lin JY, Wu JH, Tai SY, Yue GT Electrochimica Acta, 83, 221, 2012 |
5 |
One-dimensional growth and electrochemical properties of polyaniline deposited by a pulse potentiostatic method Jiang HF, Liu XX Electrochimica Acta, 55(24), 7175, 2010 |
6 |
Comparison of the growth process and electrochemical properties of polyaniline films prepared by pulse potentiostatic and potentiostatic method on titanium electrode Zhou HH, Wen JB, Ning XH, Fu CP, Chen JH, Kuang YF Journal of Applied Polymer Science, 104(1), 458, 2007 |
7 |
Deposition of poly(diphenylamine-co-o-chloroaniline) by pulse potentiostatic method: Growth equation and characterization Rajendran V, Gopalan A, Buvaneswari R, Vasudevan T, Wen TC Journal of Applied Polymer Science, 88(2), 389, 2003 |
8 |
Growth behaviour of polyaniline films deposited by pulse potentiostatic method Rajendran V, Gopalan A, Vasudevan T, Chen WC, Wen TC Materials Chemistry and Physics, 65(3), 320, 2000 |