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An ATR-FTIR Study on the Effect of Molecular Structural Variations on the CO2 Absorption Characteristics of Heterocyclic Amines Part II

机译:ATR-FTIR研究分子结构变化对杂环胺的CO2吸收特性的影响第二部分

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摘要

This paper reports on an ATR-FTIR spectroscopic investigation of the CO2 absorption characteristics of a series of heterocyclic diamines: hexahydropyrimidine (HHPY), 2-methyl and 2,2-dimethylhexahydropyrimidine (MHHPY and DMHHPY), hexahydropyridazine (HHPZ), piperazine (PZ) and 2,5- and 2,6-dimethylpiperazine (2,6-DMPZ and 2,5-DMPZ). By using in situ ATR-FTIR the structure–activity relationship of the reaction between heterocyclic diamines and CO2 is probed. PZ forms a hydrolysis-resistant carbamate derivative, while HHPY forms a more labile carbamate species with increased susceptibility to hydrolysis, particularly at higher CO2 loadings (>0.5 mol CO2/mol amine). HHPY exhibits similar reactivity toward CO2 to PZ, but with improved aqueous solubility. The α-methyl-substituted MHHPY favours HCO3 formation, but MHHPY exhibits comparable CO2 absorption capacity to conventional amines MEA and DEA. MHHPY show improved reactivity compared to the conventional α-methyl- substituted primary amine 2-amino-2-methyl-1-propanol. DMHHPY is representative of blended amine systems, and its reactivity highlights the advantages of such systems. HHPZ is relatively unreactive towards CO2. The CO2 absorption capacity CA (mol CO2/mol amine) and initial rates of absorption RIA (mol CO2/mol amine min−1) for each reactive diamine are determined: PZ: CA=0.92, RIA=0.045; 2,6-DMPZ: CA=0.86, RIA=0.025; 2,5-DMPZ: CA=0.88, RIA=0.018; HHPY: CA=0.85, RIA=0.032; MHHPY: CA=0.86, RIA=0.018; DMHHPY: CA=1.1, RIA=0.032; and HHPZ: no reaction. Calculations at the B3LYP/6-31+G** and MP2/6-31+G** calculations show that the substitution patterns of the heterocyclic diamines affect carbamate stability, which influences hydrolysis rates.
机译:本文报告了ATR-FTIR光谱研究一系列杂环二胺的CO2吸收特性:六氢嘧啶(HHPY),2-甲基和2,2-二甲基六氢嘧啶(MHHPY和DMHHPY),六氢哒嗪(HHPZ),哌嗪(PZ )和2,5-和2,6-二甲基哌嗪(2,6-DMPZ和2,5-DMPZ)。通过使用原位ATR-FTIR,可探究杂环二胺与CO2之间反应的结构-活性关系。 PZ形成抗水解的氨基甲酸酯衍生物,而HHPY形成更不稳定的氨基甲酸酯类,对水解的敏感性增强,尤其是在较高的CO2含量(> 0.5 mol CO2 / mol胺)下。 HHPY对CO2的反应性与PZ相似,但水溶性提高。 α-甲基取代的MHHPY有利于HCO3 -的形成,但MHHPY具有与常规胺MEA和DEA相当的CO2吸收能力。与常规的α-甲基取代的伯胺2-氨基-2-甲基-1-丙醇相比,MHHPY显示出改善的反应性。 DMHHPY是共混胺体系的代表,其反应活性突出了此类体系的优势。 HHPZ对二氧化碳相对没有反应性。确定每种反应性二胺的CO2吸收容量CA(摩尔CO2 /摩尔胺)和初始吸收速率RIA(摩尔CO2 /摩尔胺min -1 ):PZ:CA = 0.92,RIA = 0.045; 2,6-DMPZ:CA = 0.86,R IA = 0.025; 2,5-DMPZ:C A = 0.88,R IA = 0.018; HHPY:C A = 0.85,R IA = 0.032; MHHPY:C A = 0.86,R IA = 0.018; DMHHPY:C A = 1.1,R IA = 0.032;和HHPZ:无反应。 B3LYP / 6-31 + G **和MP2 / 6-31 + G **的计算表明,杂环二胺的取代方式影响氨基甲酸酯的稳定性,从而影响水解速率。

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