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α-螺旋构象中的多肽表现为二极管。

Polypeptides in alpha-helix conformation perform as diodes.

机构信息

Department of Chemical Engineering, Texas A&M University, College Station, Texas 77843-3122, USA.

出版信息

J Chem Phys. 2010 Feb 14;132(6):065102. doi: 10.1063/1.3310387.

Abstract

Molecules that resemble a semiconductor diode depletion zone are those with an intrinsic electric dipole, which were suggested as potential electronic devices. However, so far, no single molecule has met such a goal because any electron donor-acceptor linker strongly diminishes any possibility of diode behavior. We find an intrinsic diode behavior in polypeptides such as poly(L-alanine) and polyglycine in alpha-helix conformation, explained in terms of molecular orbital theory using ab initio methods. The application of an antiparallel electric field with respect to the molecular dipole yields a gradual increase in current through the junction because the valence and conduction orbitals approach each other reducing their gap as the bias increases. However, a parallel field makes the gap energy increase, avoiding the pass of the electrons.

摘要

类似于半导体二极管耗尽区的分子是具有固有电偶极子的分子,它们被认为是潜在的电子器件。然而,到目前为止,没有一个单一的分子能够达到这一目标,因为任何电子给体-受体连接体都会强烈降低二极管行为的任何可能性。我们在α-螺旋构象的多肽中发现了固有二极管行为,如聚(L-丙氨酸)和聚甘氨酸,这可以用从头算方法的分子轨道理论来解释。与分子偶极子相反的电场的应用会导致结中的电流逐渐增加,因为价轨道和导轨道彼此接近,随着偏压的增加,它们的间隙减小。然而,平行场会增加带隙能量,从而阻止电子通过。

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