HIGHLIGHTS
SUMMARY
Efforts to characterize protein_crystals have led to advancements in crystal production, stabilization, and design-increasing their appeal for material applications. The authors propose implementing protein_crystals as tunable porous scaffolds for the organization and containment of diverse functional guest molecules in the interest of producing multifunctional textile materials. A typical protein_crystal contains uniform solvent-filled channels ranging from 30 to 60% of the total crystal volume. This limitation may be overcome by devising methods for integrating protein_crystals into larger host materials. This limitation may be overcome by devising methods terial can be realized. for integrating . . .
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