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Determination of Ion--Solvent Equilibria in the Gas Phase. Hydration of Diprotonated Diamines and Bis(trimethylammonium) Alkanes

机译:气相中离子溶剂平衡的测定双质子化的二胺和双(三甲基铵)烷烃的水合

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摘要

Many ions of interest in condensed phase chemistry cannot be produced in the gas phase by conventional methods. This is particularly the case for multiply charged inorganic and bio-organic ions. However, these species can be produced by electrospray,which is a method with which electrolyte ions present in a solution can be transferred to the gas phase. An ion-source reaction chamber was developed with which the equilibrium constants of ion--molecule equilibria and their temperature dependence can bedetermined, where the ions involved are produced by electrospray. The hydration equilibria M~(z+)(H_2O)_(n-1) + H_2O = M~(z+)(H_2O)_n were determined for M~(z+) = Na~+, K~+, n-C_3H_7NH_3~+, n-C_6H_(13)NH_3~+. The G_(n-,n)~° H_(n-,n)~° and 5_(n-,n)~°were found to be in good agreement with previous determinations where these ions were produced by conventional techniques. Equilibria determinations were also obtained for the diprotonated alpha, omega-alkyldiammonium ions: H3N(CH2)_PNH_3~(2+) where p = 5, 6, 7, 8, 9, 10, 12. The H~° values obtained for these ions show that the hydration proceeds by water molecules occupying sequentially first the a charge site and then the other site, omega. It is found that the H_(0,1)~°=H_(1,2)~° and H_(2,3)~°H_(3,4)~° where the second pair of enthalpies are slightly lower. The equality of the paired enthalpies is due to the large distance between the two charged sites. The entropy S_(n-,n)~o values also support alternate occupation of the a and omega charge sites. Equilibria were determined also for the methylated analogues: (CH_3)3N(CH2)pN(CH_3)_3~(2+), p = 2, 3,4,6. The hydration interactions for these ions is much weaker, as expected from previous work on the hydration of (CH_3)_4N~+ by Meot-Ner and Deakyne. The observed entropy changes suggest a possible scheme of consecutive charged sites occupation which is different from that observed for the H_3N(CH_2)_pNH_3~(2+) compounds. This different scheme is consistent with structure and energy predictions forthe (CH3)_4N~+ hydrates due to Meot-Ner and Deakyne.
机译:通过常规方法不能在气相中产生冷凝相化学中的许多关注离子。对于带多个电荷的无机和生物有机离子尤其如此。但是,这些物质可以通过电喷雾生产,电喷雾是一种将溶液中存在的电解质离子转移到气相中的方法。开发了一个离子源反应室,利用该室可以确定离子-分子平衡的平衡常数及其温度依赖性,其中所涉及的离子是通过电喷雾产生的。确定M〜(z +)= Na〜+,K〜+,n-C_3H_7NH_3〜的水合平衡M〜(z +)(H_2O)_(n-1)+ H_2O = M〜(z +)(H_2O)_n +,n-C_6H_(13)NH_3〜+。发现G_(n-,n)〜°H_(n-,n)〜°和5_(n-,n)〜°与以前的测定结果非常吻合,在这些测定中,这些离子是通过常规技术产生的。还获得了双质子化的α,ω-烷基二铵离子的平衡测定:H3N(CH2)_PNH_3〜(2+),其中p = 5、6、7、8、9、10、12。获得的H〜°值离子表明水合是通过依次占据一个电荷位点,然后依次占据另一个位点Ω的水分子进行的。发现第二对焓稍低的H_(0,1)〜°= H_(1,2)〜°和H_(2,3)〜°H_(3,4)〜°。配对焓的相等是由于两个带电位点之间的距离较大。熵S_(n-,n)〜o值也支持α和ω电荷位点的交替占据。还确定了甲基化类似物的平衡:(CH_3)3N(CH2)pN(CH_3)_3〜(2 +),p = 2、3、4、6。这些离子的水合作用要弱得多,正如先前Meot-Ner和Deakyne对(CH_3)_4N〜+水合的研究所预期的那样。所观察到的熵变化表明可能存在连续带电位点占据的方案,该方案不同于H_3N(CH_2)_pNH_3〜(2+)化合物所观察到的方案。这种不同的方案与由于Meot-Ner和Deakyne导致的(CH3)_4N〜+水合物的结构和能量预测相一致。

著录项

  • 来源
    《Journal of the American Chemical Society》 |1996年第49期|p.12437-12442|共6页
  • 作者单位

    Contribution from the Department of Chemistry, University of Alberta, Edmonton, Alberta, Canada T6G 2G2;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

  • 入库时间 2022-08-18 03:25:49

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