>
Fa   |   Ar   |   En
   Antibacterial activity of hydrophobic composite materials containing a visible-light-sensitive photocatalyst  
   
نویسنده yamauchi k. ,yao y. ,ochiai t. ,sakai m. ,kubota y. ,yamauchi g.
منبع journal of nanotechnology - 2011 - شماره : 0
چکیده    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.
آدرس 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
 
     
   
Authors
  
 
 

Copyright 2023
Islamic World Science Citation Center
All Rights Reserved