A Universal Size-Controllable Top-Down Synthesis of Nanomaterials via Electrospray
Abstract
A universal strategy for size-controllable (1–100 nm) production of nanomaterials was achieved by tuning the conductivity of electrospraying solvent, using but not limited to quartz, diamond, and metals as feedstock. Theoretical and experimental analyses reveal a mechanism, where conductivity-regulated tangential electrical stress drives proton-induced lattice slip and hydrolysis.
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