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理解多尺度形貌中的共混相结构以制备高性能光伏电池 被引量:1
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作者 张明 钟文楷 +8 位作者 钱诗赟 吕博赛 周冠清 薛晓南 周子春 史志文 朱磊 张永明 刘烽 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2023年第7期159-169,共11页
将PC_(71)BM引入J51∶N2200和PM6∶Y6两个典型的有机光伏系统中,研究了共混相的性质.研究结果表明,共混相中的激子离解和载流子传输过程是影响器件光电转换效率的关键.在J51∶N2200∶PC_(71)BM共混薄膜中,PC_(71)BM在共混相内的聚集会... 将PC_(71)BM引入J51∶N2200和PM6∶Y6两个典型的有机光伏系统中,研究了共混相的性质.研究结果表明,共混相中的激子离解和载流子传输过程是影响器件光电转换效率的关键.在J51∶N2200∶PC_(71)BM共混薄膜中,PC_(71)BM在共混相内的聚集会引入能量势垒抑制空穴转移过程.同时,双纤维网络之间间隙的扩大限制了解离后的电子和空穴在共混区内的有效扩散,从而导致较为严重的复合和能量损失.而在PM6∶Y6∶PC_(71)BM共混薄膜中,引入的PC_(71)BM分子均匀分布在共混相中,并能与PM6和Y6分子较好地混合.同时,PC_(71)BM的加入不会干扰Y6到PM6的空穴转移,并增强了共混相的双极性传输特性.这种形貌非常有优势,其中存在大量的给受体界面,且产生的电子和空穴可以迅速扩散,并在晶相中高速传输至电极.该结果揭示了在多尺度形貌调控中共混相结构的重要性,是下一阶段有机太阳能电池效率超过20%需要重点考虑的问题. 展开更多
关键词 共混相 多尺度形貌 有机光伏 光电转换效率
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低维材料极化激元及其耦合特性 被引量:2
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作者 马赛群 邓奥林 +2 位作者 吕博赛 胡成 史志文 《物理学报》 SCIE EI CAS CSCD 北大核心 2022年第12期156-170,共15页
极化激元—光与物质中的电子、声子、激子或磁振子等发生强耦合而形成的一种新的集体振荡模式,近年来在纳米光子学领域受到了广泛的关注.低维材料极化激元拥有的高空间压缩比、低损耗、光电可调控等特点使其在微纳光子学器件中有着极高... 极化激元—光与物质中的电子、声子、激子或磁振子等发生强耦合而形成的一种新的集体振荡模式,近年来在纳米光子学领域受到了广泛的关注.低维材料极化激元拥有的高空间压缩比、低损耗、光电可调控等特点使其在微纳光子学器件中有着极高的潜在应用价值,比如石墨烯中波长可调的等离极化激元、六方氮化硼中高质量的双曲声子极化激元、三氧化钼中面内各向异性的拓扑声子极化激元、碳纳米管中的一维拉廷格液体等离极化激元等.这些极化激元相互之间以及极化激元与外场之间还能进一步发生显著的耦合相互作用,产生各种丰富新奇的物理现象,极大地拓展了极化激元的应用前景.本文以几种典型的低维纳米材料中极化激元的耦合特性为例,从表征纳米极化激元的扫描近场光学显微技术出发,首先简单介绍几种典型极化激元的基本性质,然后详细讨论各种极化激元之间以及极化激元与外场的耦合,最后展望极化激元耦合作用的潜在应用. 展开更多
关键词 极化激元 低维材料 耦合特性 扫描近场光学显微技术
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Fano Resonance Enabled Infrared Nano-Imaging of Local Strain in Bilayer Graphene 被引量:1
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作者 杜靖 吕博赛 +10 位作者 单琬斐 陈佳俊 周先亮 谢京旭 邓奥林 胡成 梁齐 谢贵柏 李小军 罗卫东 史志文 《Chinese Physics Letters》 SCIE CAS CSCD 2021年第5期60-66,共7页
Detection of local strain at the nanometer scale with high sensitivity remains challenging.Here we report near-field infrared nano-imaging of local strains in bilayer graphene by probing strain-induced shifts of phono... Detection of local strain at the nanometer scale with high sensitivity remains challenging.Here we report near-field infrared nano-imaging of local strains in bilayer graphene by probing strain-induced shifts of phonon frequency.As a non-polar crystal,intrinsic bilayer graphene possesses little infrared response at its transverse optical phonon frequency.The reported optical detection of local strain is enabled by applying a vertical electrical field that breaks the symmetry of the two graphene layers and introduces finite electrical dipole moment to graphene phonon.The activated phonon further interacts with continuum electronic transitions,and generates a strong Fano resonance.The resulted Fano resonance features a very sharp near-field infrared scattering peak,which leads to an extraordinary sensitivity of-0.002%for the strain detection.Our results demonstrate the first nano-scale near-field Fano resonance,provide a new way to probe local strains with high sensitivity in non-polar crystals,and open exciting possibilities for studying strain-induced rich phenomena. 展开更多
关键词 RED image Fano Resonance Enabled Infrared Nano-Imaging of Local Strain in Bilayer Graphene
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Superlubricity enabled dry transfer of non-encapsulated graphene
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作者 应哲 邓奥林 +4 位作者 吕博赛 王乐乐 Takashi Taniguchi Kenji Watanabe 史志文 《Chinese Physics B》 SCIE EI CAS CSCD 2019年第2期434-438,共5页
Transferring high-quality exfoliated graphene flakes onto different substrates while keeping the graphene free of polymer residues is of great importance, but at the same time very challenging. Currently, the only fea... Transferring high-quality exfoliated graphene flakes onto different substrates while keeping the graphene free of polymer residues is of great importance, but at the same time very challenging. Currently, the only feasible way is the so-called all-dry "pick-and-lift" method, in which a hexagonal boron nitride(hBN) flake is employed to serve as a stamp to pick up graphene from one substrate and to lift it down onto another substrate. The transferred graphene samples, however,are always covered or encapsulated by hBN flakes, which leads to difficulties in further characterizations. Here, we report an improved "pick-and-lift" method, which allows ultra-clean graphene flakes to be transferred onto a variety of substrates without hBN coverage. Basically, by exploiting the superlubricity at the graphene/hBN stack interface, we are able to remove the top-layer hBN stamp by applying a tangential force and expose the underneath graphene. 展开更多
关键词 SUPERLUBRICITY TRANSFER GRAPHENE HETEROSTRUCTURES
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Near-Field Optical Identification of Metallic and Semiconducting Single-Walled Carbon Nanotubes
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作者 王乐乐 吕博赛 +4 位作者 高强 陈佳俊 应哲 邓奥林 史志文 《Chinese Physics Letters》 SCIE CAS CSCD 2020年第2期70-73,共4页
Single-walled carbon nanotubes(SWCNTs),due to their outstanding electrical and optical properties,are expected to have extensive applications,such as in transparent conductive fims and ultra-small field-effect transis... Single-walled carbon nanotubes(SWCNTs),due to their outstanding electrical and optical properties,are expected to have extensive applications,such as in transparent conductive fims and ultra-small field-effect transistors(FETs).However,those applications can only be best realized with pure metallic or pure semiconducting SWCNTs.Hence,identifying and separating metallic from semiconducting SWCNTs in as-grown samples are crucial.In addition,knowledge of the type of an SWCNT is also important for further exploring its new properties in fundamental science.Here we report employing scanning near-field optical microscopy(SNOM)as a direct and simple method to identify metallic and semiconducting SWCNTs on SiO2/Si substrates.Metallic and semiconducting SWCNTs show distinct near-field optical responses because the metallic tubes support plasmons whereas the semiconducting tubes do not.The reliability of this method is verified using FET testing and Rayleigh scattering spectroscopy.Our result demonstrates that the SNOM technique provides a reliable,simple,noninvasive and in situ method to distinguish between metallic and semiconducting SWCNTs. 展开更多
关键词 method SEPARATING TRANSPARENT
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