Sustainable Energy Education and Research Center (SEERC), University of Tennessee, Knoxville, Tennessee 37996, USA.
Langmuir. 2010 Oct 19;26(20):16048-54. doi: 10.1021/la102832x.
Morphological variations of Photosystem I (PS I) assembly on hydroxyl-terminated alkanethiolate self-assembled monolayer (SAM)/Au substrates with various deposition techniques is presented. Our studies indicate that deposition conditions such as PS I concentration and driving force play a central role in determining organization of immobilized PS I on thiol-activated Au surfaces. Specifically, atomic force microscopy (AFM) and ellipsometry analyses indicate that gravity-driven deposition from concentrated PS I solutions results in a large number of columnar PS I aggregates, which assemble perpendicular to the Au surface. PS I deposition yields much more uniform layers when deposited at lower concentrations, suggesting preassembly of the aggregate formation in the solution phase. Moreover, in electric field assisted deposition at high field strengths, columnar self-assembly is largely prevented, thereby allowing a uniform, monolayer-like deposition even at very high PS I concentrations. In situ dynamic light scattering (DLS) studies of solution-phase aggregation dynamics of PS I suspensions in both the presence and absence of an applied electric field support these observations and clearly demonstrate that the externally imposed electric field effectively fragments large PS I aggregates in the solution phase, thereby permitting a uniform deposition of PS I trimers on SAM/Au substrates.
介绍了在具有不同沉积技术的羟基终止烷硫醇自组装单层(SAM)/Au 基底上 PS I 组装的形态变化。我们的研究表明,沉积条件,如 PS I 浓度和驱动力,在确定固定在硫醇激活的 Au 表面上的 PS I 的组织中起着核心作用。具体而言,原子力显微镜(AFM)和椭圆光度法分析表明,从高浓度 PS I 溶液中重力驱动的沉积导致大量柱状 PS I 聚集体,其垂直于 Au 表面组装。当以较低浓度沉积时,PS I 沉积产生更均匀的层,表明在溶液相中预先形成聚集体形成。此外,在高场强下的电场辅助沉积中,柱状自组装在很大程度上被阻止,从而允许即使在非常高的 PS I 浓度下也能进行均匀的单层状沉积。在存在和不存在外加电场的情况下,PS I 悬浮液在溶液相中的聚集动力学的原位动态光散射(DLS)研究支持这些观察结果,并清楚地表明,外加电场有效地在溶液相中使大的 PS I 聚集体碎片化,从而允许 PS I 三聚体在 SAM/Au 基底上均匀沉积。