Turnitin
降AI改写
早检测系统
早降重系统
Turnitin-UK版
万方检测-期刊版
维普编辑部版
Grammarly检测
Paperpass检测
checkpass检测
PaperYY检测
Trace to the source: self‐tuning of MOF photocatalysts
Z Qian, R Zhang, Y ** the next-generation functional materials. Their capability of being …
Tin-based metal organic framework catalysts for high-efficiency electrocatalytic CO2 conversion into formate
Electrochemical reduction of carbon dioxide (ERCO 2) allows for the conversion of CO 2 to
value-added low-carbon chemicals. Catalysts are indispensable for an efficient ERCO 2 …
value-added low-carbon chemicals. Catalysts are indispensable for an efficient ERCO 2 …
Decoration and utilization of a special class of metal–organic frameworks containing the fluorine moiety
Fluorinated organic molecules are generally chemically stable and have low electric
polarizability because of the high electronegativity of fluorine. The use of fluorinated organic …
polarizability because of the high electronegativity of fluorine. The use of fluorinated organic …
Thermal conductivity of covalent-organic frameworks
Covalent-organic frameworks (COFs) are a highly promising class of materials that can
provide an excellent platform for thermal management applications. In this Perspective, we …
provide an excellent platform for thermal management applications. In this Perspective, we …
Correlated missing linker defects increase thermal conductivity in metal–organic framework UiO-66
Thermal transport in metal–organic frameworks (MOFs) is an essential but frequently
overlooked property. Among the small number of existing studies on thermal transport in …
overlooked property. Among the small number of existing studies on thermal transport in …
Origin of ultralow thermal conductivity in metal halide perovskites
Resulting from their remarkable structure–property relationships, metal halide perovskites
have garnered tremendous attention in recent years for a plethora of applications. For …
have garnered tremendous attention in recent years for a plethora of applications. For …
Correlating framework structures and thermoelectric performance of metal–organic framework/carbon nanotube thermoelectric hybrids with n–p type inversion
Metal–organic frameworks (MOFs) show considerable promise as thermoelectric materials
due to the inherently low thermal conductivities provided by their unique porous frameworks …
due to the inherently low thermal conductivities provided by their unique porous frameworks …