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In inclusion, as a plasmonic nanomaterial with a diverse spectral resonance, titanium nitride (TiN) nanoparticles tend to be biologically hybridized in to the silk glands, using full advantageous asset of the silkworms' open circulatory system plus the absorption band of mKate2 silk. This biological hybridization via direct eating of TiN nanoparticles further enhances the overall photoelectric conversion ability of mKate2 silk. It's envisioned that the biologically derived photoelectric prot