Title: | Synthesis and enhanced electron transfer of supramolecular nano-composite containing dendritic dye and surface-modified ZnO nano-rods |
Authors: | Lin, Chien-Min Li, Ming-Shiou Dwivedi, Atul Kumar Lin, Hong-Cheu 材料科學與工程學系 Department of Materials Science and Engineering |
Keywords: | Supramolecular nano-composite;Dendritic dye;Surface-modified nano-rod;Zinc oxide (ZnO);Photo-induced charge separation;Electron transfer |
Issue Date: | 1-Oct-2018 |
Abstract: | Supramolecular nano-composites 15T5N/ZnOx-PNH containing enhanced compatibilities of dendritic dye 15T5N and surface-modified nano-rod ZnOx-PNH were developed in this study. The physical properties of supramolecular nano-composites have been well investigated by theoretical calculation and various measurements, including UV visible, PL, TEM, TCSPC, FT-IR, and CV. H-bonded nano-composite 15T5N/ZnO30-PNH possessed the saturated quenched fiuorscence as dendritic dye 15T5N complexed with surface-modified nano-rod ZnO30-PNH. In contrast to nano-rod mixture 15T5N/ZnO (without surface-modification), more widened visible absorption band to promote more efficient photo-induced charge separation phenomenon was observed in supramolecular nano-composite 15T5N/ZnO30-PNH. Compared with surfactant T-PNH, less efficient electron transfer of surfactant T-PC6 was observed in TCSPC and PL measurements because of the steric hindrance of long alkyl chains (-C6H13) attached to surfactant T-PC6. Therefore, the triple H-bonds between dendritic dye 15T5N and surface-modified nano-rod ZnO30-PNH are verified to result in the desirable effective electron transfer in supramolecular nano-composite 15T5N/ZnO30-PNH. |
URI: | http://dx.doi.org/10.1016/j.dyepig.2018.04.052 http://hdl.handle.net/11536/145227 |
ISSN: | 0143-7208 |
DOI: | 10.1016/j.dyepig.2018.04.052 |
Journal: | DYES AND PIGMENTS |
Volume: | 157 |
Begin Page: | 179 |
End Page: | 189 |
Appears in Collections: | Articles |