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◆ ACS Materials Letters2026-01-22· Ionic conductivity

Hard–Soft Acid–Base Interactions Control Ionic Conductivity in Molecular-Crystal-Based Electrolytes

Shujit Chandra Paul, Stephanie L. Wunder, Michael J. Zdilla

原始摘要(英文原文)· Original abstract
The influence of hard and soft base coordination on ionic conductivity was systematically investigated using diamine (hard base)- and dinitrile (soft base)-based ligands in molecular crystal-based solid electrolytes. For molecular crystals (Gln) 2 LiPF 6, (Gln) 2 CuPF 6, (DAB) 2 LiPF 6, and (DAB) 2 CuPF 6 (Gln = glutaronitrile, DAB = 1,4-diaminobutane) with isomorphic crystal structures ( P 4̅2 1 c space group) and comparable metal–metal (Li + –Li + or Cu + –Cu + ) distances, less favorable soft–hard interactions (Cu + –amine or Li + –nitrile) resulted in nearly 2 orders of magnitude improvement in ionic conductivity compared to the more favorable soft–soft and hard–hard pairings (Cu + –nitrile or Li + –amine). This significant enhancement is attributed to the weaker, more labile coordination between soft nitrile donors and hard Li + ions or hard -NH 2 donors and soft Cu +, facilitating faster ion migration, reinforcing the critical role of Hard–Soft Acid–Base theory (HSAB)-guided coordination chemistry in modulating ion mobility in soft-solid molecular electrolytes, and providing valuable insights to rationally design high-performance solid electrolytes.
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