化学
共晶体系
玻璃化转变
电导率
质子
热传导
相变
无水的
相(物质)
聚合物
分析化学(期刊)
热力学
物理化学
结晶学
材料科学
复合材料
有机化学
量子力学
微观结构
物理
作者
Nattapol Ma,Nao Horike,Loris Lombardo,Soracha Kosasang,Kotoha Kageyama,Chonwarin Thanaphatkosol,Kanokwan Kongpatpanich,Ken-ichi Otake,Satoshi Horike
摘要
Superprotonic phase transition in CsHSO4 allows fast protonic conduction, but only at temperatures above the transition temperature of 141 °C (Tc). Here, we preserve the superprotonic conductivity of CsHSO4 by forming a binary CsHSO4-coordination polymer glass system, showing eutectic melting. Their anhydrous proton conductivities below Tc are at least 3 orders of magnitude higher than CsHSO4 without compromising conductivity at higher temperatures or the need for humidification, reaching 6.3 mS cm-1 at 180 °C. The glass also introduces processability to the conductor, as its viscosity below 103 Pa·s can be achieved at 65 °C. Solid-state NMR and X-ray pair distribution functions reveal the oxyanion exchanges and the origin of the preserved conductivity. Finally, we demonstrate the preparation of a micrometer-scale thin-film proton conductor showing low resistivity with high transparency (transmittance >85% between 380-800 nm).
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