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FINE NOBLE METAL PARTICLES, METHOD FOR COLLECTING FINE NOBLE METAL PARTICLES, AND METHOD FOR PRODUCING FINE NOBLE METAL PARTICLE DISPERSION USING COLLECTED FINE NOBLE METAL PARTICLES
FINE NOBLE METAL PARTICLES, METHOD FOR COLLECTING FINE NOBLE METAL PARTICLES, AND METHOD FOR PRODUCING FINE NOBLE METAL PARTICLE DISPERSION USING COLLECTED FINE NOBLE METAL PARTICLES
The present invention provides a noble metal fine particle with a protein adsorbed thereon, including a noble metal fine particle, and a protein adsorbed on a surface of the noble metal fine particle. The protein has an isoelectric point in a range of pH 4.0 to 7.5. An amount of the protein adsorbed is in a range of 3 to 55.1 wt% with respect to a total weight of the noble metal fine particle and the protein. The noble metal fine particle with a protein adsorbed thereon according to the present invention has excellent redispersibility. That is, by adjusting the pH of a noble metal fine particle dispersed liquid to the isoelectric point of the proteins and allowing the noble metal fine particles to be aggregated without adding a degrading enzyme that degrades the proteins to the noble metal fine particle dispersed liquid, it is possible to allow the noble metal fine particles with proteins adsorbed thereon withdrawn from the noble metal fine particle dispersed liquid to have an average particle diameter that is not increased significantly even after they are redispersed in another dispersion medium.
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