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4篇 您的检索式:作者名="Mark H. Rummeli"
    题名 作者 年代 出处 被引量
1Chemical vapor deposition growth of large-scale hexagonal boron nitride with controllable orientation显示文摘有一致厚度的大域的六角形的硼氮化物(h-BN ) 的化学蒸汽免职(CVD ) 合成是很挑战性的,主要由于这材料的极其高的成核密度。此处,我们报导晶片规模的成功的生长,有大单人赛水晶的领域尺寸的高质量的 h-BN 单层电影,吗直到~ 72 ??????????????????????????慮潮档湡敮獬???????慮潮畴敢??洠獥灯牯????  ??Xiuju Song Junfeng Gao Yufeng Nie Teng Gao Jingyu Sun Donglin Ma Qiucheng Li Yubin Chen Chuanhong Jin Alicja Bachmatiuk Mark H. Rummeli Feng Ding Yanfeng Zhang Zhongfan Liu 2015Nano Research2015,8,10:12
2Scalable and ultrafast epitaxial growth of single-crystal graphene wafers for electrically tunable liquid-crystal microlens arrays显示文摘The scalable growth of wafer-sized single-crystal graphene in an energy-efficient manner and compatible with wafer process is critical for the killer applications of graphene in high-performance electronics and optoelectronics. Here, ultrafast epitaxial growth of single-crystal graphene wafers is realized on singlecrystal Cu90Ni10(1 1 1) thin films fabricated by a tailored two-step magnetron sputtering and recrystallization process. The minor nickel(Ni) content greatly enhances the catalytic activity of Cu, rendering the growth of a 4 in. single-crystal monolayer graphene wafer in 10 min on Cu90Ni10(1 1 1), 50 folds faster than graphene growth on Cu(1 1 1). Through the carbon isotope labeling experiments, graphene growth on Cu90Ni10(1 1 1) is proved to be exclusively surface-reaction dominated, which is ascribed to the Cu surface enrichment in the Cu Ni alloy, as indicated by element in-depth profile. One of the best benefits of our protocol is the compatibility with wafer process and excellent scalability. A pilot-scale chemical vapor deposition(CVD) system is designed and built for the mass production of single-crystal graphene wafers, with productivity of 25 pieces in one process cycle. Furthermore, we demonstrate the application of single-crystal graphene in electrically controlled liquid-crystal microlens arrays(LCMLA), which exhibit highly tunable focal lengths near 2 mm under small driving voltages. By integration of the graphene based LCMLA and a CMOS sensor, a prototype camera is proposed that is available for simultaneous light-field and light intensity imaging. The single-crystal graphene wafers could hold great promising for highperformance electronics and optoelectronics that are compatible with wafer process.Bing Deng Zhaowei Xin Ruiwen Xue Shishu Zhang Xiaozhi Xu Jing Gao Jilin Tang Yue Qi Yani Wang Yan Zhao Luzhao Sun Huihui Wang Kaihui Liu Mark H. Rummeli Lu-Tao Weng Zhengtang Luo Lianming Tong Xinyu Zhang Changsheng Xie Zhongfan Liu Hailin Peng 2019Science Bulletin2019,64,10:4
3Single Cr atom catalytic growth of graphene显示文摘Huy Q. Ta Uang Zhao Wanjian Yin Darius Pohl Bemd Rellinghaus Thomas Gemming Barbara Trzebicka Justinas Palisaitis Gao Jing Per O. A. Persson Zhongfan Liu Alicja Bachmatiuk Mark H. Rummeli 2018Nano Research2018,11,5:3
4Size and time dependent internalization of label-free nano-graphene oxide in human macrophages显示文摘Graphene 氧化物为生物医学的应用作为材料显示出大诺言,例如,一个多药交货平台。与这在看法,在 nanosized graphene 氧化物薄片和生物房间之间的相互作用上的研究的报告开始正在出现。然而,限制,并且最使用了的研究遗体的数字标记 graphene 为氧化物样品在 endocytosis 之上追踪材料。不幸地,标记的过程改变 graphene 氧化物,和这另外的 functionalization 的表面功能被显示了改变细胞的反应。因此,在这个工作,我们使用了没有标签的 graphene 氧化物。我们小心地用扫描 / 传播电子显微镜学追踪了三不同 nanoscale graphene 氧化物薄片尺寸分布的举起。举起在无差别的人的单核白血球房间(THP-1 ) 被调查并且区分了巨噬细胞房间。数据表演为举起的清楚的尺寸依赖,以便更大的 graphene 氧化物薄片(并且簇) 被房间更容易与更小的薄片相比收起。而且,举起被显示很快发生,在有 THP-1 房间的孵化的二 min 以内。数据与 nanoparticles 为细胞的孵化研究加亮关键需要,到作为某些相关性为短潜伏期被进行(例如,尺寸和集中) 与更长的潜伏期被失去。Rafael G. Mendes Angelo Mandarino Britta Koch Anne K. Meyer Alicja Bachmatiuk Cordula Hirsch Thomas Gemming Oliver G. Schmidt Zhongfan Liu Mark H. Rummeli 2017Nano Research2017,10,6:1
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