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Stackable Aromatic Dipeptide Ring Structures toward Nanotube Formation: Thermodynamics and Interactions in Gas-Phase and Solution

机译:可堆叠的芳族二肽环对纳米管的形成:热力学和溶液中的热力学和相互作用

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摘要

Increasing attention has been drawn towards self-assembling dipeptide nanotube materials (NT) for their tunable proper- ties. Despite recent advances, a fundamental understanding of the conditions that drive the self-assembly process is still lacking. Here, we report the structures, thermodynamics, and underlying interactions of the nanotube forming potential of cyclic and linear aromatic dipeptides phenylalanine-tyrosi- ne, tryptophan-tyrosine, and dityrosine via the piecewise self- assembly mechanism. The cyclic dipeptides have better favor- ability of oligomerization in the gas phase than the linear dipeptides, largely due to the enthalpic gain of forming more hydrogen bonds, suggesting that the piecewise mechanism is plausible for vapor deposition methods. Oligomerization in solution, which would require desolvation of free monomers, was shown to be thermodynamically unfavorable, especially in polar solvents, demonstrating the need for an external stimulus for the crystallization of NTs. The generated oligomeric rings show structural robustness and symmetry, allowing excellent stacking potential in both lateral and axial directions. The nature of the sidechains significantly affects the stabilizations within the oligomeric structure. The insights generated can be used as a basis for dipeptide modifications that could enhance targeted NT properties for different applications.
机译:越来越多的注意力引起了自组装二肽纳米管材料(NT)的可调节功能。尽管最近进步,但仍缺乏对推动自组装过程的条件的基本理解。在这里,我们报告了纳米管的结构,热力学和基本相互作用,形成环状和线性芳族二肽苯丙氨酸 - 薄苯胺,色氨酸 - 酪氨酸和DITYROSINE的潜在,并通过分段的自组装机制。与线性二肽相比,环状二肽在气相中具有更好的青睐能力,这在很大程度上是由于形成更多氢键的焓增益,这表明对蒸气沉积方法的分段机制是合理的。在溶液中的寡聚(需要自由单体脱溶)在热力学上是不利的,尤其是在极性溶剂中,这表明需要外部刺激对NT的结晶。生成的低聚环显示出结构鲁棒性和对称性,从而在侧向和轴向方向上具有出色的堆叠电位。 Sidechains的性质显着影响寡聚结构内的稳定性。生成的见解可以用作二肽修改的基础,该基础可以增强针对不同应用的目标NT属性。

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