High efficiency synthesis of HKUST-1 under mild conditions with high BET surface area and CO2 uptake capacity

2018 
Abstract This study focuses on the development of a hydrothermal method for the rapid synthesis of good quality copper benzene-1,3,5-tricarboxylate (referred to as HKUST-1) with high yield under mild preparation conditions to address the issues associated with reported methods. Different synthesis conditions and activation methods were studied to understand their influence on the properties of HKUST-1. It was found that mixing the precursors at 50 °C for 3 h followed by activation via methanol refluxing led to the formation of a product with the highest BET specific surface area of 1615 m 2 /g and a high yield of 84.1%. The XRD and SEM data illustrated that the product was highly crystalline. The sample was also tested on its capacity in CO 2 adsorption. The results showed strong correlation between surface area of the sample and its CO 2 uptake at 1 bar and 27 °C. The HKUST-1 prepared in this study demonstrated a high CO 2 uptake capacity of 4.2 mmol/g. It is therefore concluded that this novel and efficient method can be used in the rapid preparation of HKUST-1 with high surface area and CO 2 uptake capacity.
    • Correction
    • Source
    • Cite
    • Save
    • Machine Reading By IdeaReader
    40
    References
    36
    Citations
    NaN
    KQI
    []