化学
质子
电导率
活化能
热传导
中子衍射
硫酸
质子输运
大气温度范围
扩散
粉末衍射
化学物理
分析化学(期刊)
结晶学
物理化学
无机化学
晶体结构
热力学
核物理学
有机化学
物理
作者
Jin Chen,Qingqing Mei,Yinlin Chen,Christopher Marsh,Bing An,Xue Han,Ian P. Silverwood,Ming Li,Yongqiang Cheng,Meng He,Xi Chen,Weiyao Li,Meredydd Kippax‐Jones,Danielle Crawshaw,Mark D. Frogley,Sarah J. Day,Victoria García Sakai,Pascal Manuel,Anibal J. Ramirez‐Cuesta,Sihai Yang⧫,Martin Schröder
摘要
The development of materials showing rapid proton conduction with a low activation energy and stable performance over a wide temperature range is an important and challenging line of research. Here, we report confinement of sulfuric acid within porous MFM-300(Cr) to give MFM-300(Cr)·SO4(H3O)2, which exhibits a record-low activation energy of 0.04 eV, resulting in stable proton conductivity between 25 and 80 °C of >10-2 S cm-1. In situ synchrotron X-ray powder diffraction (SXPD), neutron powder diffraction (NPD), quasielastic neutron scattering (QENS), and molecular dynamics (MD) simulation reveal the pathways of proton transport and the molecular mechanism of proton diffusion within the pores. Confined sulfuric acid species together with adsorbed water molecules play a critical role in promoting the proton transfer through this robust network to afford a material in which proton conductivity is almost temperature-independent.
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