Giupponi G, Buzza D M A
Polymer IRC, Department of Physics & Astronomy, University of Leeds, Leeds LS2 9JT, United Kingdom.
J Chem Phys. 2004 Jun 1;120(21):10290-8. doi: 10.1063/1.1714829.
We study via lattice Monte Carlo simulation and Flory theory the properties of g=1-6 dendrimers in variable solvent quality. For all the generations studied, we find that the radius of gyration R(g) collapses significantly (factor of 2) going from athermal to extreme poor solvent conditions, indicating that varying solvent quality is an effective means of controlling dendrimer size. We also find that in athermal, theta, and extreme poor solvent conditions, the radius of gyration of dendrimers scales with the total number of monomers roughly as R(g) approximately N(1/3). However, a more careful analysis shows that in athermal and theta solvents, there is, in fact, a small but systematic deviation of R(g) from R(g) approximately N(1/3) scaling and the simulation data is described better by the Flory theory prediction of R(g) approximately N(1/5)(g+1)m in athermal solvents and R(g) approximately N(1/4)(g+1)m in theta solvents. We also find for our simulation data that stronger deviations from constant density scaling are possible, with scaling behavior as shallow as R(g) approximately N(0.26) possible for solvent conditions in between theta and the completely collapsed state. It is evident therefore that dendrimers do not obey (or even approximately obey) R(g) approximately N(1/3) scaling under all solvent conditions. Under all solvent conditions, we find that the intramolecular density is dense corelike (i.e., the density maximum is in the interior of the dendrimer) and terminal groups are delocalized throughout the dendrimer.
我们通过晶格蒙特卡罗模拟和弗洛里理论研究了不同溶剂质量条件下 g = 1 - 6 的树枝状大分子的性质。对于所研究的所有代数,我们发现,从无热溶剂条件到极端不良溶剂条件,回转半径 R(g) 显著收缩(收缩因子为 2),这表明改变溶剂质量是控制树枝状大分子尺寸的有效手段。我们还发现,在无热、θ溶剂和极端不良溶剂条件下,树枝状大分子的回转半径与单体总数的标度关系大致为 R(g) 近似于 N(1/3)。然而,更仔细的分析表明,在无热溶剂和θ溶剂中,实际上 R(g) 与 R(g) 近似于 N(1/3) 的标度存在小但系统性的偏差,并且模拟数据在无热溶剂中由弗洛里理论预测的 R(g) 近似于 N(1/5)(g + 1)m以及在θ溶剂中由 R(g) 近似于 N(1/4)(g + 1)m 能更好地描述。我们还从模拟数据中发现,与恒定密度标度的偏差可能更大,对于介于θ溶剂和完全塌缩状态之间的溶剂条件,标度行为可能浅至 R(g) 近似于 N(0.26)。因此很明显,树枝状大分子在所有溶剂条件下并不遵循(甚至近似遵循)R(g) 近似于 N(1/3) 的标度关系。在所有溶剂条件下,我们发现分子内密度呈致密核状(即密度最大值在树枝状大分子内部),且端基在整个树枝状大分子中是离域的。