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Antibacterial activity of hydrophobic composite materials containing a visible-light-sensitive photocatalyst
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نویسنده
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yamauchi k. ,yao y. ,ochiai t. ,sakai m. ,kubota y. ,yamauchi g.
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منبع
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journal of nanotechnology - 2011 - شماره : 0
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چکیده
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The conventional superhydrophobic surface offered by ptfe provides no sterilization performance and is not sufficiently repellent against organic liquids. these limit ptfe's application in the field of disinfection and result a lack of durability. n-doped tio 2 photocatalyst added ptfe composite material was developed to remedy these shortcomings. this paper reports the surface characteristics,and the bactericidal and self-cleaning performance of the newly-developed composite material. the material exhibited a contact angle exceeding 150 degrees consistent with its hydrophobicity despite the inclusion of the hydrophilic n-doped tio 2. the surface free energy obtained for this composite was 5.8mn/m. even when exposed to a weak fluorescent light intensity (100 lx) for 24 hours,the viable cells of gram-negative e. coli on the 12% n-doped tio 2-ptfe film were reduced 5 logs. the higher bactericidal activity was also confirmed on the gram-positive mrsa. compared with the n-doped tio 2 coating only,the inactivation rate of the composite material was significantly enhanced. utilizing the n-doped tio 2 with the ptfe composite coating could successfully remove,by uv illumination,oleic acid adsorbed on its surface. these results demonstrate the potential applicability of the novel n-doped tio 2 photocatalyst hydrophobic composite material for both indoor antibacterial action and outdoor contamination prevention. copyright © 2011 kentaro yamauchi et al.
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آدرس
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collaborative research center,daido university,10-3 takiharu-cho,minami-ku, Japan, kanagawa academy of science and technology,3-2-1 sakado,takatsu-ku,kawasaki-shi,kanagawa 213-0012,japan,department of urology and molecular science,graduate school of medicine,yokohama city university,3-9 fukuura,kanazawa-ku, Japan, kanagawa academy of science and technology,3-2-1 sakado,takatsu-ku,kawasaki-shi,kanagawa 213-0012,japan,division of photocatalyst for energy and environment,research institute for science and technology,tokyo university of science,1-3 kagurazaka,shinjuku-ku, Japan, kanagawa academy of science and technology,3-2-1 sakado,takatsu-ku,kawasaki-shi, Japan, department of urology and molecular science,graduate school of medicine,yokohama city university,3-9 fukuura,kanazawa-ku, Japan, department of information design,daido university,10-3 takiharu-cho,minami-ku, Japan
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Authors
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