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Direct Laser Patterning of Soft Matter: Photothermal Processing of Supported Phospholipid Multilayers with Nanoscale Precision

机译:直接对软物质进行激光图案化:纳米级精度的支持磷脂多层的光热加工

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摘要

Direct laser patterning of supported phospholipid multilayers is investigated. Spin coating is used to fabricate stacked bilayers of 1,2-dioleoyl-sn-glycero-3-phosphate (DOPA). Photothermal processing with a focused laser beam at lambda = 514 nm allows removal of the coating at predefined positions without causing any significant change in adjacent areas. Moreover, processing with nanoscale precision is feasible despite the soft and fluid nature of phospholipid films. In particular, holes with diameters from 1.8 mu m down to 300 nm and below are fabricated by using a 1/e(2) laser spot size of about 2.5 mu m. In addition, patterning is also very flexible and can be carried out over macroscopic length scales and at short processing times. Considering these,features photothermal laser processing constitutes a powerful tool for micro- and nanopatterning of phospholipid films.
机译:研究了负载的磷脂多层的直接激光图案化。旋涂法用于制造1,2-二油酰基-sn-甘油-3-磷酸酯(DOPA)的堆叠双层。用λ= 514 nm的聚焦激光束进行光热处理,可以在预定位置去除涂层,而不会引起相邻区域的任何显着变化。而且,尽管磷脂膜具有柔软和流动的性质,但仍可以以纳米级精度进行加工。特别地,通过使用约2.5μm的1 / e(2)激光光斑尺寸来制造直径从1.8μm向下至300nm及以下的孔。此外,图案化也非常灵活,可以在宏观长度范围内且在较短的处理时间上进行。考虑到这些,特征光热激光加工构成了用于磷脂膜的微米和纳米图案化的强大工具。

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