Solid State and Structural Chemistry Unit, Indian Institute of Science , Bangalore 560 012, India.
J Am Chem Soc. 2017 Feb 8;139(5):1975-1983. doi: 10.1021/jacs.6b11835. Epub 2017 Jan 27.
A strategy is outlined for the design of hand-twisted helical crystals. The starting point in the exercise is the one-dimensional (1D) plastic crystal, 1,4-dibromobenzene, which is then changed to a 1D elastic crystal, exemplified by 4-bromophenyl 4'-chlorobenzoate, by introduction of a molecular synthon -O-CO- in lieu of the supramolecular synthon Br···Br in the precursor. The 1D elastic crystals are next modified to two-dimensional (2D) elastic crystals, of the type 4-bromophenyl 4'-nitrobenzoate where the halogen bonding and C-H···O hydrogen bonding are well-matched. Finally, varying the interaction strengths in these 2D elastic crystals gives plastic crystals with two pairs of bendable faces but without slip planes. Typical examples are 4-chlorophenyl and 4-bromophenyl 4'-nitrobenzoate. This type of 2D plasticity represents a new type of bendable crystals in which plastic behavior is seen with a fair degree of isotropic character in the crystal packing. The presence of two sets of bendable faces, generally orthogonal to each other, allows for the possibility of hand-twisting of the crystals to give grossly helical morphologies. Accordingly, we propose the name hand-twisted helical crystals for these substances.
概述了一种设计手扭螺旋晶体的策略。该策略的起点是一维(1D)塑性晶体 1,4-二溴苯,然后通过引入分子桥联基-O-CO-取代前体中的超分子桥联基 Br···Br,将其转变为一维弹性晶体,以 4-溴苯基 4'-氯苯甲酸酯为例。接下来,将一维弹性晶体进一步修饰为二维(2D)弹性晶体,如 4-溴苯基 4'-硝基苯甲酸酯,其中卤键和 C-H···O 氢键得到很好的匹配。最后,改变这些 2D 弹性晶体中的相互作用强度,得到具有两对可弯曲面但没有滑移面的塑性晶体。典型的例子是 4-氯苯基和 4-溴苯基 4'-硝基苯甲酸酯。这种类型的 2D 塑性代表了一种新的可弯曲晶体类型,其中在晶体堆积中具有相当程度的各向同性特征,可以观察到塑性行为。两对可弯曲面的存在,通常彼此正交,使得晶体可以进行手扭,从而获得大体上呈螺旋形态的晶体。因此,我们将这些物质命名为手扭螺旋晶体。