Zobrazeno 1 - 10
of 17
pro vyhledávání: '"Fang-Mei Liu"'
Autor:
劉芳梅, Fang-mei Liu
本研究以新世代消費族群為研究對象,探討消費者的產品知識(高、低)、消費者的性別(男、女)、參考團體的性別(男、女)和參考團體的專業性(高、低)四項因素,如何影響消費者
Externí odkaz:
http://thesis.lib.nccu.edu.tw/cgi-bin/cdrfb3/gsweb.cgi?o=dstdcdr&i=sid=%22B2002001328%22.
Autor:
Yuan Chun Wu, Yuan Jun Hsu, Chun Hsiung Fang, Po Yen Lu, Fang Mei Liu, Yun Long Jiang, Jang Soon Im
Publikováno v:
SID Symposium Digest of Technical Papers. 50:428-431
Autor:
Chun Hsiung Fang, Yuan Chun Wu, Fang Mei Liu, Yun Long Jiang, Jang Soon Im, Yuan Jun Hsu, Po Yen Lu
Publikováno v:
SID Symposium Digest of Technical Papers. 50:418-421
Autor:
Jing Nie, Fang-mei Liu, Danqun Huo, Bin He, Changjun Hou, Huanbao Fa, Xiaoli Wang, Xian-feng Shen, Wei Yin
Publikováno v:
Journal of Solid State Electrochemistry. 22:3515-3525
Based on the modulated electronic properties of Fe3O4-graphene (Fe3O4/GN composite) as well as the outstanding complexation between Pb2+ and natural substances garlic extract (GE), a novel electrochemical sensor for the determination of Pb2+ in waste
Publikováno v:
SID Symposium Digest of Technical Papers. 49:1796-1799
Autor:
Wei Yin, Jing Nie, Danqun Huo, Huanbao Fa, Bin He, Fang-mei Liu, Tian-ci Xia, Changjun Hou, Yu-nan Qin
Publikováno v:
Journal of Solid State Electrochemistry. 21:3257-3268
A lead-chelating ligand, 2,2′-((1E)-((4-((2-mercaptoethyl)thio)-1,2phenylene)bis(azany-lylidene))bis(methanylylide-ne))diphenol (ETBD), was immobilized on a nanocomposite Fe3O4@Au/MoS2/GN possessing a large surface area to produce a biomimetic sens
Publikováno v:
Sensors and Actuators B: Chemical. 242:889-896
A sensor made of Fe 3 O 4 @TiO 2 @NG@Au@ETBD was developed to specifically detect Pb 2+ in a significantly toxic aqueous environment. Nitrogen–doped graphene (NG) was utilized as the substrate material of the sensor by a self–assembly method. The
Autor:
Qiao-qian Sun, Wei Yin, Mei Yang, Fang-mei Liu, Jing Nie, Yan-ling Qin, Yu-jiao Zang, Danqun Huo, Bin He, Changjun Hou, Huanbao Fa, Jie Zheng
Publikováno v:
Microchemical Journal. 156:104845
An imprinted electrochemical sensor based on S-MoSe2/NSG/Au composite is firstly synthesized via a novel hydrothermal route with large surface area and abundant binding cavities for synergistic effect on dopamine (DA) recognition. High sensitivity ob