School of Chemistry, The University of Sydney, Sydney, New South Wales 2006, Australia.
Dalton Trans. 2012 Oct 14;41(38):11739-44. doi: 10.1039/c2dt31112g. Epub 2012 Aug 17.
The metal-organic framework Ni(2)(dobdc) (CPO-27-Ni, where dobdc = 1,4-dioxido-2,5-benzenedicarboxylate) has been post-synthetically modified with piperazine (pip) - a known 'accelerator' to improve the kinetics of CO(2) uptake in alkanolamine solvents for chemical absorption - and the impact of the modification on the CO(2) uptake and selectivity over N(2) has been probed. While the modified framework, Ni(2)(dobdc)(pip)(0.5) (pip-CPO-27-Ni), exhibits a lower uptake of CO(2) compared with the non-grafted material, the selectivity for CO(2) over N(2) at 25 °C and at pressures pertinent to post-combustion flue gas capture (0.1-0.15 bar) is enhanced. Mechanistically, the interaction between the CO(2) molecules and the free amine sites in pip-CPO-27-Ni occurs via physisorption and chemisorption interactions, in which CO(2) binds to the framework with an isosteric heat of adsorption (-Q(st)) of 40.5 kJ mol(-1) at very low coverage (P = 0.033 mbar), followed by binding at a higher heat of adsorption (-Q(st) = 46.2 kJ mol(-1) at P = 3.55 mbar). Pure water adsorption isotherms revealed a two-step mechanism for uptake in CPO-27-Ni, consistent with adsorption into the first and second hydration spheres of Ni(2+) followed by subsequent uptake via physisorption into the pores. Additional steric hindrance in pip-CPO-27-Ni results in a single step only. The working capacity over multiple cycles was also investigated using a temperature swing adsorption process which revealed reversible CO(2) adsorption and desorption of 10 wt% over 10 cycles.
金属有机骨架 Ni(2)(dobdc)(CPO-27-Ni,其中 dobdc=1,4-二氧代-2,5-苯二甲酸酯)已通过哌嗪(pip)进行后合成修饰,哌嗪是一种已知的“促进剂”,可提高烷醇胺溶剂中 CO(2)吸收的动力学,用于化学吸收,研究了修饰对 CO(2)吸收和 N(2)选择性的影响。虽然修饰后的骨架 Ni(2)(dobdc)(pip)(0.5)(pip-CPO-27-Ni)的 CO(2)吸收量低于未接枝的材料,但在 25°C 和与后燃烧烟道气捕获相关的压力(0.1-0.15 巴)下,对 CO(2)相对于 N(2)的选择性得到了增强。从机理上讲,pip-CPO-27-Ni 中的 CO(2)分子与游离胺位点之间的相互作用通过物理吸附和化学吸附相互作用发生,其中 CO(2)与骨架以等吸附热(-Q(st))-40.5 kJ mol(-1)结合在非常低的覆盖率(P = 0.033 mbar)下,然后在较高的吸附热(-Q(st)=46.2 kJ mol(-1)在 P = 3.55 mbar 下)下结合。在 CPO-27-Ni 中,纯水吸附等温线揭示了吸收的两步机制,与 Ni(2+)的第一和第二水合球的吸附一致,然后通过物理吸附进入孔道进行随后的吸收。在 pip-CPO-27-Ni 中,由于额外的空间位阻,只发生一步。还通过温度摆动吸附过程研究了多次循环的工作容量,该过程显示了 10 个循环中可逆 CO(2)吸附和解吸的 10 wt%。