Institut für Theoretische Physik and Centre for Theoretical Sciences (NTZ), Universität Leipzig, Postfach 100 920, D-04009 Leipzig, Germany.
Phys Chem Chem Phys. 2010 Oct 7;12(37):11548-54. doi: 10.1039/c002862b. Epub 2010 Aug 6.
In detailed microcanonical analyses of densities of states obtained by extensive multicanonical Monte Carlo computer simulations, we investigate the caloric properties of conformational transitions that adsorbing polymers experience near attractive substrates. For short chains and strong surface attraction, the microcanonical entropy turns out to be a convex function of energy in the transition regime, indicating that surface-entropic effects are relevant. Albeit known to be a continuous transition in the thermodynamic limit of infinitely long chains, the adsorption transition of nongrafted finite-length polymers thus exhibits a clear signature of a first-order-like transition, with coexisting phases of adsorbed and desorbed conformations. Another remarkable consequence of the convexity of the microcanonical entropy is that the transition is accompanied by a decrease of the microcanonical temperature with increasing energy. Since this is a characteristic physical effect it might not be ignored in analyses of cooperative macrostate transitions in finite systems.
在通过广泛的多正则蒙特卡罗计算机模拟获得的态密度的详细微正则分析中,我们研究了吸附聚合物在有吸引力的基底附近经历的构象转变的热性质。对于短链和强表面吸引力,微正则熵在转变区域中是能量的凸函数,表明表面熵效应是相关的。尽管在无穷长链的热力学极限中已知是连续转变,但无支化有限长度聚合物的吸附转变因此表现出类似于一级转变的明显特征,共存的吸附和解吸构象相。微正则熵的凸性的另一个显著后果是,随着能量的增加,转变伴随着微正则温度的降低。由于这是一个特征物理效应,在有限系统中合作宏观态转变的分析中可能不能忽略。