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首页> 外文期刊>Applied Physics A: Materials Science & Processing >Nanofoaming dynamics in biopolymers by femtosecond laser irradiation
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Nanofoaming dynamics in biopolymers by femtosecond laser irradiation

机译:飞秒激光辐照生物聚合物中的纳米泡沫动力学

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We have recently shown that irradiation of self-standing films of the biopolymers collagen and gelatine with single femtosecond laser pulses produces a nanofoaming layer with regular bubble size which can be controlled by wavelength selection. Following these initial studies, here we report on the temporal evolution of the foaming effect by measurements in situ and in real time of the change in the transmittance of a cw probe HeNe laser through the irradiated films. Self standing films of the biopolymers were irradiated with 90 fs laser pulses at 800, 400, and 266 nm. For fluences below and above the modification threshold a permanent attenuation of the transmission occurs (increasing with fluence). The initial decay of the transmission is fast (around few tens of ns), and is followed by dynamics in the longer timescale (micro and milliseconds). The temporal evolution of the transmission measured upon fs laser irradiation is similar with that determined in the irradiation of the biopolymer films at 248 nm with 25 ns laser pulses. The method allows separating in time the different processes occurring after irradiation that lead to a permanent nanofoaming structure, while the results allow us to understand the mechanisms of femtosecond laser processing of the biopolymers and their interest in biomedical applications.
机译:我们最近显示,用单个飞秒激光脉冲辐照生物聚合物胶原蛋白和明胶的自立膜会产生具有规则气泡大小的纳米泡沫层,可以通过波长选择来控制该泡沫层。在进行了这些初步研究之后,在这里我们通过现场测量和实时测量连续波探针HeNe激光穿过辐照膜的透射率的变化来报告起泡效果的时间演变。用800、400和266nm的90fs激光脉冲辐照生物聚合物的自立膜。对于低于或高于修改阈值的通量,发生传输的永久衰减(随着通量增加)。传输的初始衰减很快(大约几十ns),随后在较长的时间尺度(微秒和毫秒)内动态变化。在fs激光辐照下测得的透射率的时间演化与在25 ns激光脉冲下于248 nm辐照生物聚合物薄膜时所确定的相似。该方法允许及时分离照射后发生的导致永久性纳米泡沫结构的不同过程,而结果使我们能够了解飞秒激光加工生物聚合物的机理及其在生物医学应用中的兴趣。

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