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金属薄膜缺陷及生长模式的有限元模拟 被引量:3
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作者 宋鹏 陆建生 +2 位作者 张德丰 周洁 杨滨 《材料科学与工艺》 EI CAS CSCD 北大核心 2007年第6期827-830,共4页
为了从微观领域研究金属薄膜缺陷的形成和薄膜的初期生长模式,利用有限元法对金属薄膜沉积过程中的缺陷和生长模式进行了计算机模拟.以Pt原子为膜料粒子,采用刚性球入射到石墨基底,重点研究了在基底上形成的缺陷结果表明,在薄膜生长初... 为了从微观领域研究金属薄膜缺陷的形成和薄膜的初期生长模式,利用有限元法对金属薄膜沉积过程中的缺陷和生长模式进行了计算机模拟.以Pt原子为膜料粒子,采用刚性球入射到石墨基底,重点研究了在基底上形成的缺陷结果表明,在薄膜生长初期会形成"树桩"小岛,而当碳基底上沉积铂原子的能量值达到75 eV时,就有可能发生随机原子注入."树桩"小岛的形成使薄膜生长多为岛状生长机制,同时检验了有限元方法在微观领域中的合理性和适用性. 展开更多
关键词 薄膜缺陷 薄膜生长模式 有限元 计算机模拟
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Vacuum deposited film growth,morphology and interfacial electronic structures of 2,7-dioctyl[1]benzothieno[3,2-b]benzothiophene(C8-BTBT)
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作者 WEI Jun-hua NIU Dong-mei GAO Yong-li 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第4期1041-1061,共21页
Interfaces play critical roles in electronic devices and provide great diversity of film morphology and device performance.We retrospect the substrate mediated vacuum film growth of benchmark high mobility material 2,... Interfaces play critical roles in electronic devices and provide great diversity of film morphology and device performance.We retrospect the substrate mediated vacuum film growth of benchmark high mobility material 2,7-dioctyl[1]benzothieno[3,2-b]benzothiophene(C8-BTBT)and the interface electronic structures.The film growth of C8-BTBT molecules is diversified depending on the substrate-molecule and molecule-molecule interactions.On atomic smooth substrates C8-BTBT film grows in layer-by-layer mode while on coarse substrate it grows in islands mode.The initial molecular layer at dielectric,semiconductor and conductive substrates displays slight different lattice structure.The initial molecule orientation depends on the substrate and will gradually change to standing up configuration as in bulk phase.C8-BTBT behaves as electron donor when contacting with dielectric and stable conductive materials.This usually induces a dipole layer pointing to C8-BTBT and an upward bend bending in C8-BTBT side toward the interface.Although it is air stable,C8-BTBT is chemically reactive with some transition metals and compounds.The orientation change from lying down to standing up in the film usually leads to decrease of ionization potential.The article provides insights to the interface physical and chemical processes and suggestions for optimal design and fabrication of C8-BTBT based devices. 展开更多
关键词 interface film morphology packing configuration growth mode electronic structure chemical reaction interface dipole
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