Zwaneveld Nikolas A A, Pawlak Rémy, Abel Mathieu, Catalin Daniel, Gigmes Didier, Bertin Denis, Porte Louis
Laboratoire Chimie Provence, Faculté des Sciences et Techniques, Universités Aix-Marseille I, II, III-CNRS UMR 6264, Equipe CROPS, campus Saint Jérôme Case 542, 13397 Marseille Cedex 20, France.
J Am Chem Soc. 2008 May 28;130(21):6678-9. doi: 10.1021/ja800906f. Epub 2008 Apr 30.
The development of nanoscale masking for particle deposition is exceedingly important to push the future of nanoelectronics beyond the current limits of lithography. We present the first example of ordered hexagonal covalent nanoporous structures deposited in extended arrays of near monolayer coverage across a Ag(111) surface. The networks were formed from the deposition of the reagents from a heated molybdenum crucible between 370 and 460 K under ultrahigh vacuum (UHV) onto a cleaned Ag(111) substrate and imaged using a scanning tunneling microscope (STM). Two surface covalent organic frameworks (SCOFs) are presented; the first is formed from the deposition of 1,4-benzenediboronic acid (BDBA) and its dehydration to form the boroxine-linked SCOF-1, the second is formed from the co-deposition of BDBA and 2,3,6,7,10,11-hexahydroxytriphenylene (HHTP) to form a dioxaborole-linked SCOF-2 network. The networks were found to produce nanoporous structures of 15 A for SCOF-1 and 29 A for SCOF-2, which agreed with theoretical pore sizes determined from DFT calculations. Both SCOFs were found to have exceptional thermal stability, maintaining their structure until approximately 750 K, which was found to be the polymer degradation temperature from thermal gravimetric analysis (TGA).
用于粒子沉积的纳米级掩膜的发展对于推动纳米电子学超越当前光刻技术的极限极为重要。我们展示了第一个有序六边形共价纳米多孔结构的实例,该结构以近单层覆盖的扩展阵列形式沉积在Ag(111)表面上。这些网络是通过在超高真空(UHV)下,将来自加热钼坩埚的试剂在370至460 K之间沉积到清洁的Ag(111)衬底上形成的,并使用扫描隧道显微镜(STM)成像。展示了两种表面共价有机框架(SCOF);第一种是由1,4-苯二硼酸(BDBA)沉积并脱水形成硼氧烷连接的SCOF-1,第二种是由BDBA和2,3,6,7,10,11-六羟基三亚苯(HHTP)共沉积形成二氧硼戊环连接的SCOF-2网络。发现这些网络产生的纳米多孔结构对于SCOF-1为15 Å,对于SCOF-2为29 Å,这与从DFT计算确定的理论孔径一致。发现两种SCOF都具有出色的热稳定性,在大约750 K之前保持其结构,这被发现是热重分析(TGA)确定的聚合物降解温度。