Optical properties of polydimethylsiloxane (PDMS) during nanosecond laser processing

ty10086 提交于 周四, 08/26/2021 - 13:25
文章英文标题
Optical properties of polydimethylsiloxane (PDMS) during nanosecond laser processing
正文
Abstract(#br)This article presents experimental investigations of effects of the process parameters on the medical grade polydimethylsiloxane (PDMS) elastomer processed by laser source with irradiation at UV (266 and 355\u003cce:hsp sp=\"0.25\"/\u003enm), VIS (532\u003cce:hsp sp=\"0.25\"/\u003enm) and NIR (1064\u003cce:hsp sp=\"0.25\"/\u003enm).(#br)Systematic experiments are done to characterize how the laser beam parameters (wavelength, fluence, and number of pulses) affect the optical properties and the chemical composition in the laser treated areas. Remarkable changes of the optical properties and the chemical composition are observed. Despite the low optical absorption of the native PDMS for UV, VIS and NIR wavelengths, successful laser treatment is accomplished due to the incubation process occurring below the polymer surface.(#br)With increasing of the fluence and the number of the pulses chemical transformations are revealed in the entire laser treated area and hence decreasing of the optical transmittance is observed. The incubation gets saturation after a certain number of pulses and the laser ablation of the material begins efficiently. At the UV and VIS wavelengths the number of the initial pulses, at which the optical transmittance begins to reduce, decreases from 16 up to 8 with increasing of the laser fluence up to 1.0, 2.5 and 10\u003cce:hsp sp=\"0.25\"/\u003eJ\u003cce:hsp sp=\"0.25\"/\u003ecm −2 for 266, 355 and 532\u003cce:hsp sp=\"0.25\"/\u003enm, respectively. In the case of 1064\u003cce:hsp sp=\"0.25\"/\u003enm the optical transmittance begins to reduce at 11th pulse incident at a fluence of 13\u003cce:hsp sp=\"0.25\"/\u003eJ\u003cce:hsp sp=\"0.25\"/\u003ecm −2 and the number of the pulses decreases to 8 when the fluence reaches value of 16\u003cce:hsp sp=\"0.25\"/\u003eJ\u003cce:hsp sp=\"0.25\"/\u003ecm −2 . The threshold laser fluence needed to induce incubation process after certain number of pulses of 8 is different for every wavelength irradiation as the values increase from 1.0 for 266\u003cce:hsp sp=\"0.25\"/\u003enm up to 16\u003cce:hsp sp=\"0.25\"/\u003eJ\u003cce:hsp sp=\"0.25\"/\u003ecm −2 for 1064\u003cce:hsp sp=\"0.25\"/\u003enm. The incubation and the ablation processes occur in the PDMS elastomer material during its pulsed laser treatment are a complex function of the wavelength, fluence, number of pulses and the material properties as well.
文章内容(英文)
Abstract(#br)This article presents experimental investigations of effects of the process parameters on the medical grade polydimethylsiloxane (PDMS) elastomer processed by laser source with irradiation at UV (266 and 355\u003cce:hsp sp=\"0.25\"/\u003enm), VIS (532\u003cce:hsp sp=\"0.25\"/\u003enm) and NIR (1064\u003cce:hsp sp=\"0.25\"/\u003enm).(#br)Systematic experiments are done to characterize how the laser beam parameters (wavelength, fluence, and number of pulses) affect the optical properties and the chemical composition in the laser treated areas. Remarkable changes of the optical properties and the chemical composition are observed. Despite the low optical absorption of the native PDMS for UV, VIS and NIR wavelengths, successful laser treatment is accomplished due to the incubation process occurring below the polymer surface.(#br)With increasing of the fluence and the number of the pulses chemical transformations are revealed in the entire laser treated area and hence decreasing of the optical transmittance is observed. The incubation gets saturation after a certain number of pulses and the laser ablation of the material begins efficiently. At the UV and VIS wavelengths the number of the initial pulses, at which the optical transmittance begins to reduce, decreases from 16 up to 8 with increasing of the laser fluence up to 1.0, 2.5 and 10\u003cce:hsp sp=\"0.25\"/\u003eJ\u003cce:hsp sp=\"0.25\"/\u003ecm −2 for 266, 355 and 532\u003cce:hsp sp=\"0.25\"/\u003enm, respectively. In the case of 1064\u003cce:hsp sp=\"0.25\"/\u003enm the optical transmittance begins to reduce at 11th pulse incident at a fluence of 13\u003cce:hsp sp=\"0.25\"/\u003eJ\u003cce:hsp sp=\"0.25\"/\u003ecm −2 and the number of the pulses decreases to 8 when the fluence reaches value of 16\u003cce:hsp sp=\"0.25\"/\u003eJ\u003cce:hsp sp=\"0.25\"/\u003ecm −2 . The threshold laser fluence needed to induce incubation process after certain number of pulses of 8 is different for every wavelength irradiation as the values increase from 1.0 for 266\u003cce:hsp sp=\"0.25\"/\u003enm up to 16\u003cce:hsp sp=\"0.25\"/\u003eJ\u003cce:hsp sp=\"0.25\"/\u003ecm −2 for 1064\u003cce:hsp sp=\"0.25\"/\u003enm. The incubation and the ablation processes occur in the PDMS elastomer material during its pulsed laser treatment are a complex function of the wavelength, fluence, number of pulses and the material properties as well.
来源出处
Journal|[J]Applied Surface ScienceVolume 374, 2016. PP 96-103
DOI
https://doi.org/10.1016/j.apsusc.2015.10.016

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