1027776-55-1Relevant academic research and scientific papers
Does the Exception Prove the Rule? A Comparative Study of Supramolecular Synthons in a Series of Lactam Esters
Weck,Nauha,Gruber
, p. 2899 - 2911 (2019)
In this paper a series of simple lactam esters and carboxylic acids is studied with respect to their overall conformation and hydrogen bonding patterns. In total, eight lactams featuring Nα-substitution have been synthesized. Additionally, the molecular structures of related lactam esters have been considered. The length of the amide bonds does not seem to be majorly influenced by different substituents unless the electron withdrawing N-Boc-protection group is introduced, resulting in a higher susceptibility toward hydrolytic ring opening. As known from other lactams, the Nα ester moiety of the title compounds can be in an axial or equatorial conformation. Smaller ester groups were found to prefer equatorial positions, while larger ones occupy axial sites. N-substitution seems to promote axial conformations of the respective Nα group, with enantholactams being the only studied exception. In addition to the two common amide packing motifs, i.e., the R2 2 (8) amide dimer (NH···O/NH···O) and the C(4) amide chain, a third graph-set was found: the R2 2(8) NH···O/CH···O=C heterodimer. In general, there seems to be a tendency for medium-sized lactams as well as lactams with small esters to form R2 2 (8) amide dimers. Larger esters and enantholactam esters lead to C(4) amide chains. In this respect the formation of R2 2(8) N - H···O/C-H···O=C heterodimers should be seen as a remarkable exception.
Controlling the position of functional groups at the liquid/solid interface: Impact of molecular symmetry and chirality
De Cat, Inge,Gobbo, Cristian,Van Averbeke, Bernard,Lazzaroni, Roberto,De Feyter, Steven,Van Esch, Jan
supporting information; experimental part, p. 20942 - 20950 (2012/02/13)
With the aim of controlling the position of functional groups in a substrate-supported monolayer, a new family of functionalized linear alkyl chains was designed and synthesized, aided by molecular mechanics and dynamics simulations of its two-dimensional self-assembly on graphite. The self-assembly of these amino functionalized diamides at the liquid/solid interface was investigated with scanning tunneling microscopy. Intermolecular hydrogen-bonding interactions involving amides, combined with the effect of molecular symmetry and chirality, were found to guide the self-assembly. Control of the relative position and orientation of the amine groups was achieved, in the case of enantiopure compounds. Interestingly, racemates led to both racemic conglomerate and solid solution formation, with a concomitant loss of positional and orientational control of the amino groups as a result.
