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Articles by Ting Huang
Total Records ( 2 ) for Ting Huang
  Xiaolang Chen , Zuowan Zhou , Wangchun Lv , Ting Huang and Shuchun Hu
  The tetra-needle like zinc oxide whisker (T-ZnOw) was treated with γ-aminopropyltriethoxysilane (APTS), a coupling agent of silane with amino-group, to form a protection and bonding layer on its surface, where polyaniline (PANI) was in situ polymerized to form a new kind of core–shell structured T-ZnOw/PANI composites. The structure, morphologies, and conductivity of the synthesized products were characterized by Fourier transform infrared spectroscopy (FTIR), X-ray diffraction (XRD), scanning electron microscopy (SEM), UV–vis absorption spectroscopy, etc. The FTIR spectra reveal that the T-ZnOw is successfully modified by APTS and finally forms the T-ZnOw/PANI core–shell structure composites. The SEM results indicate surface modification plays distinct roles both for keeping the intactness of the morphology structure of T-ZnOw and for providing an in situ polymerization site on the surface of the T-ZnOw. The electrical conductivity of the PANI covered T-ZnOw is 7.2 x 10–1 S cm–1, which appears much higher than that of the pure T-ZnOw.
  Wei Chen , Ting Huang , Jin Dai , Wenting Liu , Julong Cheng and Yunfeng Wu
  Tobacco mosaic virus (TMV) and Potato virus Y (PVY) are two destructive plant viruses which cause significant economic losses to tobacco. Breeding resistant cultivars is one of the most important strategies to control these viruses. In this study, the responses to TMV and PVY of 22 tobacco cultivars were evaluated based on resistance index and virus titre obtained from ELISA in both greenhouses and fields during five years (2007-2011). Nicotiana glutinosa resistant to TMV and Virgin A Mutant resistant to PVY were used as resistant checks; NC89 susceptible to both TMV and PVY was used as the susceptible check. The results showed that there were significant differences in disease index and ELISA value among the 22 tobacco cultivars after inoculation. Specifically, 2 cultivars (Coker86 and Jiyan5) were identified to be resistant or moderate resistant to TMV and 3 cultivars (Liaoyan8, Jinxing6007 and Qinyan98) to PVY, while the other cultivars were susceptible or moderate susceptible to TMV or PVY. The resistant cultivars may be used as resistant resources to TMV and PVY in future breeding projects.
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