Q. Zhu Et Al. , "Improved Alignment of PEDOT:PSS Induced by in-situ Crystallization of "Green" Dimethylsulfone Molecules to Enhance the Polymer Thermoelectric Performance," FRONTIERS IN CHEMISTRY , vol.7, 2019
Zhu, Q. Et Al. 2019. Improved Alignment of PEDOT:PSS Induced by in-situ Crystallization of "Green" Dimethylsulfone Molecules to Enhance the Polymer Thermoelectric Performance. FRONTIERS IN CHEMISTRY , vol.7 .
Zhu, Q., Yildirim, E., Wang, X., Soo, X. Y. D., Zheng, Y., Tan, T. L., ... Wu, G.(2019). Improved Alignment of PEDOT:PSS Induced by in-situ Crystallization of "Green" Dimethylsulfone Molecules to Enhance the Polymer Thermoelectric Performance. FRONTIERS IN CHEMISTRY , vol.7.
Zhu, Qiang Et Al. "Improved Alignment of PEDOT:PSS Induced by in-situ Crystallization of "Green" Dimethylsulfone Molecules to Enhance the Polymer Thermoelectric Performance," FRONTIERS IN CHEMISTRY , vol.7, 2019
Zhu, Qiang Et Al. "Improved Alignment of PEDOT:PSS Induced by in-situ Crystallization of "Green" Dimethylsulfone Molecules to Enhance the Polymer Thermoelectric Performance." FRONTIERS IN CHEMISTRY , vol.7, 2019
Zhu, Q. Et Al. (2019) . "Improved Alignment of PEDOT:PSS Induced by in-situ Crystallization of "Green" Dimethylsulfone Molecules to Enhance the Polymer Thermoelectric Performance." FRONTIERS IN CHEMISTRY , vol.7.
@article{article, author={Qiang Zhu Et Al. }, title={Improved Alignment of PEDOT:PSS Induced by in-situ Crystallization of "Green" Dimethylsulfone Molecules to Enhance the Polymer Thermoelectric Performance}, journal={FRONTIERS IN CHEMISTRY}, year=2019}