Ceramic glaze having antimicrobial property
An antimicrobial ceramic glazing composition contains one or more antimicrobial agents disposed therein. Methods for making and using the glazing composition are disclosed, as well as substrates having a fired antimicrobial glaze thereon. The antimicrobial agents comprise metallic oxides, with a subset of the disclosed combinations exhibiting synergistic effect in fired glazes.
1. A method for manufacturing a glazed ceramic substrate having an antimicrobial property, comprising:
applying an antimicrobial ceramic glazing composition to a substrate, the glazing composition including a synergistic antimicrobial composition being one of:
2% Ag 2 CO 3 +2% Bi 2 O 3 ,
2% Ag 2 CO 3 +2% CuO,
2% Ag 2 CO 3 +2% SnO 2 ,
2% Ag 2 CO 3 +2% ZnO,
2% Ag 2 CO 3 +4% ZnO,
2% Bi 2 O 3 +2% CuO,
2% Bi 2 O 3 +4% CuO,
2% CuO+4% Ag 2 CO 3 ,
2% CuO+4% SnO 2 ,
2% CuO+2% TiO 2 ,
2% CuO+4% TiO 2 ,
2% CuO+4% ZnO,
2% SnO 2 +4% Ag 2 CO 3 ,
2% SnO 2 +4% CuO,
2% TiO 2 +4% Ag 2 CO 3 ,
2% TiO 2 +4% CuO,
2% ZnO+4% Ag 2 CO 3 , or
2% ZnO+4% CuO;
firing the glazing composition to transform the glazing composition into a fired glaze layer;
wherein the fired glazed layer possesses a durable antimicrobial property.
2. A glazed ceramic substrate, comprising:
a ceramic substrate having a first substrate surface; and
a fired synergistic antimicrobial composition disposed on the first substrate surface;
wherein the synergistic antimicrobial composition is a post-fired state of a ceramic glazing composition including one of:
2% Ag 2 CO 3 +2% Bi 2 O 3 ,
2% Ag 2 CO 3 +2% CuO,
2% Ag 2 CO 3 +4% SnO 2 ,
2% Ag 2 CO 3 +2% ZnO,
2% Ag 2 CO 3 +4% ZnO,
2% Bi 2 O 3 +2% CuO,
2% Bi 2 O 3 +4% CuO,
2% Bi 2 O 3 +2% ZnO,
2% Bi 2 O 3 +4% ZnO,
2% CuO+4% Ag 2 CO 3 ,
2% CuO+4% SnO 2 ,
2% CuO+2% TiO 2 ,
2% CuO+4% TiO 2 ,
2% CuO+4% ZnO,
2% SnO 2 +4% Ag 2 CO 3 ,
2% SnO 2 +4% CuO,
2% TiO 2 +4% Ag 2 CO 3 ,
2% TiO 2 +4% CuO,
2% ZnO+4% Bi 2 O 3 ,
2% ZnO+4% Ag 2 CO 3 , or
2% ZnO+4% CuO,
wherein percentages are based on weight.