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首页> 外文期刊>Journal of Physics. Condensed Matter >Transient helix formation in charged semiflexible polymers without confinement effects
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Transient helix formation in charged semiflexible polymers without confinement effects

机译:在没有限制效应的带电半弯曲聚合物中的瞬态螺旋形成

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Switching on generic interactions e.g. the Coulomb potential or other long ranged spherically symmetric repulsive interactions between monomers of bead-spring model of a semi-flexible polymer induce instabilities in a semiflexible polymer chain to form transient helical structures. Our proposed mechanism could explain the spontaneous emergence of helical order in stiff (bio-) polymers as a chain gets charged from a neutral state. But since the obtained helical structures dissolve away with time, hydrogen bonding (or other additional mechanisms), would be required to form stabilized helical structures as observed in nature (such as in biological macro-molecules). The emergence of the helix is independent of the molecular details of the monomer constituent. The key factors which control the emergence of the helical structure is the persistence length and the charge density. We have avoided using torsional potentials to obtain the transient helical structures. Moreover, we can drive the semiflexible polymer to form helices in a recurring manner by periodically increasing and decreasing the effective charge of the monomers. If the two polymer ends are tethered to two surfaces separated by a distance equal to the contour length of the polymeric chain, which could be in the range 10 nm-mu, the life time of the helical structures formed is increased.
机译:半柔性聚合物珠-弹簧模型的单体之间的库仑势或其他长程球对称排斥作用等一般相互作用的开启,会导致半柔性聚合物链中的不稳定性,从而形成瞬态螺旋结构。我们提出的机制可以解释刚性(生物)聚合物链从中性态带电时,螺旋序的自发出现。但由于获得的螺旋结构会随着时间的推移而溶解,因此需要氢键(或其他附加机制)才能形成稳定的螺旋结构,就像在自然界中观察到的那样(例如在生物大分子中)。螺旋的出现与单体成分的分子细节无关。控制螺旋结构出现的关键因素是持续长度和电荷密度。我们避免了使用扭转势来获得瞬态螺旋结构。此外,我们可以通过周期性地增加和减少单体的有效电荷来驱动半柔性聚合物以循环方式形成螺旋。如果将两个聚合物端系在两个表面上,两个表面之间的距离等于聚合物链的轮廓长度(可能在10 nmμ的范围内),则形成的螺旋结构的寿命会增加。

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