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Two-Photon Absorption and Excited State Dynamics of Two Organic Molecules Containing Donor/Acceptor Moieties
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作者 闫永丽 李波 +4 位作者 刘康俊 董志伟 马国宏 王筱梅 钱士雄 《Chinese Physics Letters》 SCIE CAS CSCD 2008年第7期2456-2459,共4页
Two new two-photon absorption (TPA) molecules, named SK-G1 and NT-G1, are synthesized and the photo- physical characteristics are investigated by using linear absorption spectra, one-photon fluorescence spectra and ... Two new two-photon absorption (TPA) molecules, named SK-G1 and NT-G1, are synthesized and the photo- physical characteristics are investigated by using linear absorption spectra, one-photon fluorescence spectra and two-photon excited fluorescence spectra. Both the compounds exhibit TPA properties, and the TPA values determined by z-scan measurement are 10 GM and 39 GM for SK-G1 and NT-G1, respectively, at wavelength 80Ohm. Time-resolved spectroscopic techniques are employed to further explore the excited state dynamics of NT-G l with larger TPA cross section. The research results show that there is an ultrafast intraband energy transfer process (about 3ps) before the formation of charge transfer state with a relatively long lifetime. 展开更多
关键词 NONLINEAR-OPTICAL PROPERTIES ULTRAFAST DYNAMICS CROSS-SECTIONS LIMITING PROPERTIES DATA-STORAGE CHROMOPHORES MICROFABRICATION TRIPHENYLAMINE FLUORESCENCE CORE
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Catalyst-Free Growth of Nanographene Films on Various Substrates 被引量:12
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作者 Lianchang Zhang Zhiwen Shi +3 位作者 Yi Wang Rong Yang Dongxia Shi Guangyu Zhang 《Nano Research》 SCIE EI CAS CSCD 2011年第3期315-321,共7页
We have developed a new method to grow uniform graphene films directly on various substrates, such as insulators, semiconductors, and even metals, without using any catalyst. The growth was carried out using a remote ... We have developed a new method to grow uniform graphene films directly on various substrates, such as insulators, semiconductors, and even metals, without using any catalyst. The growth was carried out using a remote plasma enhancement chemical vapor deposition (r-PECVD) system at relatively low temperatures, enabling the deposition of graphene films up to 4-inch wafer scale. Scanning tunneling microscopy (STM) confirmed that the films are made up of nanocrystalline graphene particles of tens of nanometers in lateral size. The growth mechanism for the nanographene is analogous to that for diamond grown by PECVD methods, in spite of sp2 carbon atoms being formed in the case of graphene rather than sp3 carbon atoms as in diamond. This growth approach is simple, low-cost, and scalable, and might have potential applications in fields such as thin film resistors, gas sensors, electrode materials, and transparent conductive films. 展开更多
关键词 NANOGRAPHENE CATALYST-FREE plasma enhancement chemical vapor deposition (PECVD) transparent and conductive film
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