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Morphological characterization of chitosan biopolymer thin films modified via fs irradiation and its potential application as functional surfaces in regenerative medicine

机译:通过FS辐射改性的壳聚糖生物聚合物薄膜的形态学特征及其潜在应用作为再生医学中的功能表面

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The creation of microporous surface modification of chitosan thin films irradiated by ultrashort laser pulses are studied. For this purpose, chitosan substrates were treated by using an amplified Ti:sapphire laser system at 800 nm central wavelength with 30 fs and 150 fs pulse duration and repetition rate 1 kHz and 50 Hz, respectively. Formation of surface modifications for both cases (30 fs and 150 fs) after femtosecond laser irradiation were observed. The threshold values for single-pulse (N= 1) and multi-pulse (N > 1) modification were evaluated by studying the linear relationship between the squared crater diameter D~2 and the logarithm of the laser fluence (F) for N = 1, 2, 5, 10, 20, 30 and 50 number of laser pulses. The coefficient of incubation ξ, a major parameter in the process of surface modification and ablation of materials also was calculated for multi - pulse fluence threshold estimation by power - law relationship F_(th) (N) = F_(th)(1) N~(ξ-1). The surface properties of chitosan based thin films before and after femtosecond laser irradiation were investigated. The aim of this work is to determine the optimal morphological characteristics of the created structures for tailoring of protein adsorption and cell behavior.
机译:研究了超微激光脉冲照射的壳聚糖薄膜的微孔表面改性。为此目的,通过使用扩增的Ti:Sapphire激光系统以800nm中心波长为800nm和150 fs脉冲持续时间和重复率为1kHz和50Hz的壳聚糖激光系统。观察到在飞秒激光照射后两种情况(30 fs和150 fs)的表面修饰的形成。通过研究Squared火山口直径D〜2与N = N =对数(F)之间的线性关系来评估单脉冲(n = 1)和多脉冲(n> 1)修改的阈值。 1,2,5,10,20,30和50个激光脉冲数。孵育系数ξ,用于通过幂律关系F_(TH)(n)= f_(1)n的多脉冲流量阈值估计来计算表面改性和烧蚀的主要参数。 〜(ξ-1)。研究了壳聚糖基薄膜的表面特性,进行了飞秒激光照射前后。这项工作的目的是确定所产生结构的最佳形态特征,用于剪裁蛋白质吸附和细胞行为。

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