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5 cm). Simulations and experimental characterizations of these components displayed excellent agreement. Our highly efficient NPOM design with a large gap size(s) enables interesting practical applications in the field of quantum emitters, energy devices, fuel generation and plasmon chemistry.Based on the distinct fingerprint-like fluorescence responses generated by different electrostatic and hydrophobic interactions between three kinds of self-designed water-soluble aggregation-induced emission (AIE) fluorogens (AIEgens) and proteins,