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Organic molecular beam deposition combined with laser-induced chemical reactions

机译:有机分子束沉积结合激光诱导的化学反应

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In order to fabricate functional organic thin films, we investigated organic molecular beam deposition combined with laser-induced chemical reactions. Bis(ethynylstyryl) benzene (BESB) films of trans,trans-isomer were deposited by this new method. The cis,cis-BESB was sublimed and cis-to-trans photoisomerization was induced upon KrF excimer laser irradiation ($lambda $EQ 248 nm). The growth of the well- oriented crystalline films was achieved upon the laser irradiation during the deposition at the substrate temperature of 60$DGR@C. At this substrate temperature only trans,trans-BESB was deposited on the substrate surface, which indicated that unreacted cis,cis-isomer was re- evaporated from the substrates. It can be explained that the crystal growth favorably proceeded due to the enhancement of the surface migration of the trans,trans-isomer and no hindrance of the cis,cis-isomer. We also fabricated thin films of a reaction product by inducing an intermolecular reaction of BESB with biphenyl-dithiol upon the laser irradiation during the deposition. It is thus found that the new process made it possible to produce the functional organic thin films, which were difficult to be evaporated by the conventional vacuum process. We discussed the chemical reactions and the deposition behavior in our process.
机译:为了制造功能性有机薄膜,我们研究了有机分子束沉积与激光诱导的化学反应联合。通过这种新方法沉积反式,反式异构体的BIS(乙炔炔酰基)苯(BESB)薄膜。 CIS,CIS-BEBB是升华的,并且在KRF准分子激光照射时诱导顺式对反式光学剂($ Lambda $ EQ228 NM)。在沉积期间在60 $ DGR @ C的沉积期间,在激光照射期间达到富定向的结晶膜的生长。在该衬底温度下,仅在基板表面上沉积反式-BEBB,这表明从基板中蒸发未反应的顺式,CIS-异构体。可以解释的是,由于逆变,反式异构体的表面迁移和CIS - 异构体没有障碍的表面迁移,晶体增长是有利的。我们还通过在沉积期间激光照射时诱导BEBB与联苯二硫醇的分子间反应来制造反应产物的薄膜。因此,发现新方法使得可以产生功能性有机薄膜,这难以通过常规真空过程蒸发。我们讨论了我们过程中的化学反应和沉积行为。

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