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Enhanced transparency, mechanical durability, and antibacterial activity of zinc nanoparticles on glass substrate.


ABSTRACT: Homogeneously distributed zinc nanoparticles (NPs) on the glass substrate were investigated for the transmittance, mechanical durability, and antibacterial effect. The buffered Ti NPs between Zn NPs and glass substrate were studied for an enhancement of the transmittance and mechanical endurance. The Ti NPs buffered Zn NPs showed a high transmittance of approximately 91.5% (at a wavelength of 550 nm) and a strong antibacterial activity for Staphylococcus aureus and Escherichia coli bacteria. The buffered Ti NPs are attractive for an excellent mechanical endurance of the Zn NPs. The Zn NPs did not require the protection layer to prevent the degradation of the performance for both the antibacterial effect and the transmittance.

SUBMITTER: Choi HJ 

PROVIDER: S-EPMC4152755 | biostudies-literature | 2014 Sep

REPOSITORIES: biostudies-literature

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Enhanced transparency, mechanical durability, and antibacterial activity of zinc nanoparticles on glass substrate.

Choi Hyung-Jin HJ   Choi Jin-Seok JS   Park Byeong-Ju BJ   Eom Ji-Ho JH   Heo So-Young SY   Jung Min-Wook MW   An Ki-Seok KS   Yoon Soon-Gil SG  

Scientific reports 20140903


Homogeneously distributed zinc nanoparticles (NPs) on the glass substrate were investigated for the transmittance, mechanical durability, and antibacterial effect. The buffered Ti NPs between Zn NPs and glass substrate were studied for an enhancement of the transmittance and mechanical endurance. The Ti NPs buffered Zn NPs showed a high transmittance of approximately 91.5% (at a wavelength of 550 nm) and a strong antibacterial activity for Staphylococcus aureus and Escherichia coli bacteria. The  ...[more]

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