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Nanostructure and thermal stability of the polyglutamate Langmuir-Blodgett films probed by interlayer energy transfer method

机译:层间能量转移法探测聚谷氨酸朗缪尔-布洛杰特薄膜的纳米结构和热稳定性

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Ultrathin films of alpha-helical polyglutamate with long flexible side chains (PG) were fabricated by the LB technique, and their nanostructure was investigated by the energy transfer method. The rodlike main chain of PG was labeled by incorporating either energy donor (naphthalene, Np) or acceptor (anthracene, An) molecules via short side chains. The fluorescence spectra of Np-An multilayers with the same number of spacing layers gave different energy transfer efficiencies, depending on the mode of depositions. This phenomenon was interpreted as being caused by the noncentered structure of the polymer backbone, which was probed by both X-ray reflectometry and fluorescence spectroscopy. The Y-type deposition induced a bilayer structure in which the stiff main chains of each monolayer were located close to the center of the bilayer. The layered structures showed excellent thermal stability up to around 120 degrees C; By thermal treatment higher than 120 degrees C, the layered structure relaxed to a stable state in which the alpha-helical backbones in each layer became intermingled. [References: 45]
机译:通过LB技术制备了具有长柔性侧链(PG)的α-螺旋聚谷氨酸超薄膜,并通过能量转移方法研究了其纳米结构。 PG的棒状主链是通过短侧链掺入能量供体(萘,Np)或受体(蒽,An)分子来标记的。具有相同间隔层数的Np-An多层膜的荧光光谱具有不同的能量转移效率,具体取决于沉积方式。该现象被解释为是由聚合物主链的非中心结构引起的,该结构是通过X射线反射法和荧光光谱法进行探测的。 Y型沉积诱导双层结构,其中每个单层的刚性主链位于双层中心附近。层状结构在高达120摄氏度左右的温度下具有出色的热稳定性;通过高于120℃的热处理,层状结构松弛至稳定状态,其中每层中的α-螺旋骨架相互混合。 [参考:45]

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