Häggman Leif, Lindblad Cecilia, Oskarsson Hans, Ullström Ann-Sofi, Persson Ingmar
Department of Chemistry, Swedish University of Agricultural Sciences, Box 7015, SE-750 07 Uppsala, Sweden.
J Am Chem Soc. 2003 Mar 26;125(12):3631-41. doi: 10.1021/ja021012i.
Alkyl-N-iminodiacetic acids with varying alkyl chain lengths have been prepared and characterized with respect to structure, acidic properties, and ability to form aggregates in water. The alkyl-N-iminodiacetic acids are the group of ligands with the lowest molecule weight which can be characterized as chelating surfactants, compounds with surface chemical properties which at the same time have a high ability to bind metal ions. The solid alkyl-N-iminodiacetic acids have a unique structure with neutral zwitterionic units linked together to polymer chains through a short strong hydrogen bond, d(O(-H)...O) approximately 2.46 A, and where the nu(O-H) stretching vibration at ca. 720 cm(-1) supports the presence of such a hydrogen bond. The polymer chains are cross-linked together to bilayers through relatively strong hydrogen bonds between ammonium and carboxylate groups, and where the parallel alkyl groups are interdigitating each other; the bilayer surface consists of hydrophilic iminodiacetic acid groups. The acidic properties of monomeric alkyl-N-iminodiacetic acids in water are in the expected ranges with pK(a) values of about 1.7, 2.3, and 10.3. n-Octadecyl-N-iminodiacetic acid, present as aggregates in water, displays very acidic properties of the first proton, and a substantially weakened acidity of the second proton, pK(a2) = 5.5-7.5, depending on ionic strength, and pK(a3) = 9.5-10.5. This pattern of the acidic constants strongly indicates that the polymer structure with short strong hydrogen bonds is maintained in the aggregates and that such bonds can exist in aqueous systems if they are supported by a strong and rigid backbone structure, as the bilayers of well-organized long interdigitating alkyl chains in the studied systems. Hydrogenbis(methyl-N-iminodiacetic acid) perchlorate precipitates from perchloric acidic solutions of methyl-N-iminodiacetic acid. The structure is built up of dimers of zwitterionic methyl-N-iminodiacetic acid units linked together by an extra proton in a short strong hydrogen bond, d(O(-H)...O) approximately 2.456(6) A, and nu(O-H) = 789 cm(-1).
已制备出具有不同烷基链长度的烷基 - N - 亚氨基二乙酸,并对其结构、酸性性质以及在水中形成聚集体的能力进行了表征。烷基 - N - 亚氨基二乙酸是分子量最低的一类配体,可被表征为螯合表面活性剂,这类化合物具有表面化学性质,同时具有高金属离子结合能力。固态烷基 - N - 亚氨基二乙酸具有独特的结构,其中中性两性离子单元通过短而强的氢键(d(O(-H)...O)约为2.46 Å)连接成聚合物链,且在约720 cm⁻¹处的ν(O - H)伸缩振动支持了这种氢键的存在。聚合物链通过铵基和羧基之间相对较强的氢键交联成双分子层,且平行的烷基相互交错排列;双分子层表面由亲水性亚氨基二乙酸基团组成。水中单体烷基 - N - 亚氨基二乙酸的酸性性质在预期范围内,pK(a)值约为1.7、2.3和10.3。正十八烷基 - N - 亚氨基二乙酸在水中以聚集体形式存在,其第一个质子显示出非常强的酸性性质,而第二个质子的酸性显著减弱,pK(a₂)=5.5 - 7.5,取决于离子强度,pK(a₃)=9.5 - 10.5。这种酸性常数模式强烈表明,具有短而强氢键的聚合物结构在聚集体中得以维持,并且如果有强而刚性的主链结构支持,这种键可以存在于水性体系中,就像所研究体系中排列良好的长交错烷基链的双分子层那样。高氯酸氢双(甲基 - N - 亚氨基二乙酸)从甲基 - N - 亚氨基二乙酸的高氯酸溶液中沉淀出来。其结构由两性离子甲基 - N - 亚氨基二乙酸单元的二聚体组成,这些单元通过一个额外的质子在短而强的氢键(d(O(-H)...O)约为2.456(6) Å,ν(O - H)=789 cm⁻¹)中连接在一起。