Electrochim Acta

2006, 52:1309–1315 CrossRef 2 Xia XH, T

Electrochim Acta

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nanocomposites using absorbent cotton. Nano-Micro Lett 2011,3(2):115–120.CrossRef 9. Kim YG, Hadiyawarman , Yoon R, Kim MY, Yi GC, Liu CL: Hydrothermally grown ZnO nanostructures on few-layer graphene sheets. Nanotechnology 2011, 22:245603–245608.CrossRef 10. Alver U, Zhou W, Belay AB, Krueger R, Davis KO, Hickman NS: Optical and structural properties of ZnO nanorods grown on graphene oxide and reduced graphene oxide film by hydrothermal method. Appl Surf Sci 2012, 258:3109–3114.CrossRef 11. Chang HX, Sun ZH, Ho KY, Tao XM, Yan F, Kwok WM, Zheng ZJ: A highly sensitive ultraviolet sensor based on a facile in situ solution-grown ZnO nanorod/graphene heterostructure. Nanoscale 2011, 3:258–264.CrossRef 12. Choi WM, Shin KS, Lee HS, Choi D, Kim KH, Shin

HJ, Yoon SM, Choi JY, Kim SW: Selective growth of ZnO nanorods on SiO2/Si substrates using a graphene buffer layer. Nano Res 2011,4(5):440–447.CrossRef 13. Wang XY, Kim K, Wang YM, Stadermann M, Noy A, Hamza AV, Yang JH, Sirbuly DJ: Matrix-assisted energy conversion in nanostructured piezoelectric arrays. Nano Lett 2010,10(12):4901–4905.CrossRef 14. Methocarbamol Zhang YF, Geng HJ, Zhou ZH, Wu J, Wang ZM, Zhang YZ, Li ZL, Zhang LY, Yang Z, Liang H, Wang H: Development of inorganic solar cells by nanotechnology. Nano-Micro Lett 2012,4(2):124–134. 15. Hu Y, Zhang Y, Xu C, Lin L, Snyder RL, Wang ZL: Self-powered system with wireless data transmission. Nano Lett 2011, 11:2572–2577.CrossRef Competing interests The authors declare that they have no competing interests. Authors’ contributions YC, HDZ, and XYW conceived of the study. YC, ZHT, SFX, and XYW carried out the experiments. HDZ, XYW, JHY, and LYS discussed the results and drafted the manuscript. All authors read and approved the final manuscript.

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