Li Zhaohui, Fehlner Thomas P
Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, Indiana 46556, USA.
Inorg Chem. 2003 Sep 8;42(18):5715-21. doi: 10.1021/ic026255q.
Utilization of binary information encoded in the charge configuration of quantum-dot cells (the quantum-dot cellular automata, QCA, paradigm) requires surface-bound molecule-sized dots for room temperature operation. Molecular QCA cells are mixed-valence complexes, and the evaluation of a surface-bound unsymmetrical, heterobinuclear, two-dot, Fe-Ru molecular QCA cell is described. The tailed complex, trans-[Ru(dppm)(2)(C[triple bond]CFc)(N[triple bond]CCH(2)CH(2)-NH(2))][PF(6)] (dppm = methylbis(diphenylphosphane), Fc = (eta(5)-C(5)H(5))Fe(eta(5)-C(5)H(4))), is covalently modified with the molecular adapter, HS(CH(2))(10)COOH, for binding to a Au surface. Preparation and characterization of the films by AFM, XPS, and electrochemical techniques are reported. Cyclic voltammetric techniques are used to assess film growth, coverage and uniformity, effects of thiol diluents on areal densities of the complex, and stabilities of the accessible redox states. Amperometric techniques are used to investigate the efficiency of both chemical and electrochemical oxidation in producing the mixed-valence dication on the surface.
利用量子点细胞(量子点细胞自动机,QCA,范式)电荷配置中编码的二进制信息,在室温操作下需要表面结合的分子尺寸的点。分子QCA细胞是混合价配合物,并描述了一种表面结合的不对称、异双核、双点、铁-钌分子QCA细胞的评估。尾状配合物反式-[Ru(dppm)₂(C≡CFc)(N≡CCH₂CH₂-NH₂)][PF₆](dppm = 甲基双(二苯基膦),Fc = (η⁵-C₅H₅)Fe(η⁵-C₅H₄))用分子适配器HS(CH₂)₁₀COOH进行共价修饰,以结合到金表面。报道了通过原子力显微镜(AFM)、X射线光电子能谱(XPS)和电化学技术对薄膜的制备和表征。循环伏安技术用于评估薄膜生长、覆盖率和均匀性、硫醇稀释剂对配合物面密度的影响以及可及氧化还原态的稳定性。安培技术用于研究化学和电化学氧化在表面产生混合价二价阳离子的效率。