Wen Liang, Zhou Tao, Zhang Jihai, Zhang Aiming
State Key Laboratory of Polymer Materials Engineering of China, Polymer Research Institute, Sichuan University , Chengdu 610065, China.
ACS Appl Mater Interfaces. 2016 Oct 19;8(41):28077-28085. doi: 10.1021/acsami.6b09504. Epub 2016 Oct 5.
Graphene has been successfully applied to the field of polymer laser patterning. As an efficient 1064 nm near-infrared (NIR) pulsed laser absorber, only 0.005 wt % (50 ppm) of graphene prepared by mechanical exfoliation endowed polymer materials with very good NIR pulsed laser patterning. Optical microscopy observed that the generated black patterns came from the local discoloration of the polymer surface subjected to the laser irradiation, and the depth of the discolored layer was determined to be within 221-348 μm. The X-ray photoelectron spectroscopy confirmed that the polymer surface discoloration was contributed by the local carbonization of polymers caused by graphene due to its high photothermal conversion capacity. Raman depth imaging successfully detected that the generated carbon in the discolored layer was composed of amorphous carbon and complex sp/sp-carbon compounds containing C≡C or conjugated C═C/C≡C structures. This study also provides a simple guideline to fabricate laser-patterning polymer materials based on graphene. We believe that graphene has broad application prospects in the field of polymer laser patterning. Importantly, this work opens up a valuable, feasible direction for the practical application of this new carbon material.
石墨烯已成功应用于聚合物激光图案化领域。作为一种高效的1064纳米近红外(NIR)脉冲激光吸收剂,仅0.005重量%(50 ppm)通过机械剥离制备的石墨烯就能赋予聚合物材料非常好的近红外脉冲激光图案化性能。光学显微镜观察到,产生的黑色图案来自于受激光照射的聚合物表面局部变色,变色层深度确定在221 - 348微米范围内。X射线光电子能谱证实,聚合物表面变色是由于石墨烯的高光热转换能力导致聚合物局部碳化所致。拉曼深度成像成功检测到变色层中生成的碳由无定形碳和含有C≡C或共轭C═C/C≡C结构的复杂sp/sp - 碳化合物组成。本研究还为基于石墨烯制备激光图案化聚合物材料提供了简单的指导方针。我们相信石墨烯在聚合物激光图案化领域具有广阔的应用前景。重要的是,这项工作为这种新型碳材料的实际应用开辟了一个有价值、可行的方向。