[1] | MA Wanyun. Measurement and Control Technique of a Single Atom Molecule-Challenging New Area in the 21st Century[J]. Physics,1997,26(7):428-431(in Chinese). 马万云. 单个原子分子测控技术-21世纪极富挑战性的新领域[J]. 物理,1997,26(7):428-431. | [2] | LI Na,CAI Min. Tight-binding Method Calculation of I-V Characteristics of Single Benzene Molecular Device[J]. Electron Compon Mater,2006,25(6):55-57(in Chinese). 李娜,蔡敏. 苯基单分子器件I-V特性的研究[J]. 电子元件与材料,2006,25(6):55-57. | [3] | LIU Song,GUO Xuefeng. Functional Single-walled Carbon Nanotube-based Molecular Devices[J]. Acta Chim Sin,2013,1(4):478-484(in Chinese). 刘松,郭雪峰. 基于单壁碳纳米管的功能分子电子器件研究[J]. 化学学报,2013,1(4):478-484. | [4] | Liu K,Wang X,Wang F. Probing Charge Transport of Ruthenium-Complex-Based Molecular Wires at the Single-Molecule Level[J]. ACS Nano,2008,2(11):2315-2323. | [5] | Sun J,Wang Y,Stoddart J F,et al. An Electrochromic Tristable Molecular Switch[J]. J Am Chem Soc,2015,137(42):13484-13487. | [6] | Imaoka T,Ueda H,Yamamoto K. Enhancing the Photoelectric Effect with a Potential-programmed Molecular Rectifier[J]. J Am Chem Soc,2012,134(20):8412-8415. | [7] | Spencer J P E. The Impact of Flavonoids on Memory:Physiological and Molecular Considerations[J]. Chem Soc Rev,2009,38(4):1152-1161. | [8] | Aguirre-Etcheverry P,O'Hare D. Electronic Communication Through Unsaturated Hydrocarbon Bridges in Homobimetallic Organometallic Complexes[J]. Chem Rev,2010,110: 4839-4864. | [9] | Sakamoto R,Wu K H,Matsuoka R,et al. π-Conjugated Bis(terpyridine) Metal Complex Molecular Wires[J]. Chem Soc Rev,2015,44(21):7698-7714. | [10] | Ceccon A,Santi S,Orian L,et al. Electronic Communication in Heterobinuclear Organometallic Complexes Through Unsaturated Hydrocarbon Bridges[J]. Coord Chem Rev,2004,248(7/8):683-724. | [11] | Bruce M I,Lapinte C,Low P J,et al. Iron Versus Ruthenium:Dramatic Changes in Electronic Structure Result from Replacement of One Fe by Ru in [{Cp*(dppe)Fe}-CC-CC-{Fe(dppe)Cp*}]n+(n=0,1,2)[J]. Organometallics,2005,24(16):3864-3881. | [12] | Guillemot M,Toupet L,Lapinte C. A Four-Oxidation-State Family of Coordinated Carbon:The First Isolable and Crystallographically Characterized Triradical[M]-C4-[M]3+[J]. Organometallics,1998,17(10):1928-1930. | [13] | Zhang J,Zhang M X,Sun C F,et al. Diruthenium Complexes with Bridging Diethynyl Polyaromatic Ligands: Synthesis, Spectroelectrochemistry, and Theoretical Calculations[J]. Organometallics,2015,34(16):3967-3978. | [14] | Li F,Liu S H, Chen G Z,et al. Synthesis, Characterization, and Electrochemical Properties of Diruthenium Complexes Bridged by Anthraquinones[J]. Organometallics,2011,30(7):1830-1837. | [15] | Ahmad N,Levison J J,Robinson S D,et al. Complexes of Ruthenium, Osmium, Rhodium, and Iridium Containing Hydride Carbonyl, or Nitrosyl Ligands[J]. Inorg Synth,1974,15:45-64. | [16] | Sheldrick G M. SHELXTL-97,Program for Crystal Structure Analysis[M]. University of Göttingen,Germany,1997. | [17] | OU Yaping,ZHANG Jing,KUANG Daizhi,et al. Syntheses, Characterization, Electrochemistry and Spectroelectrochemistry of α-Benzothiophene Acetyl and Vinyl Mononuclear Ruthenium Complexes[J]. Chinese J Inorg Chem,2016,32(4):641-648(in Chinese). 欧亚平,张静,邝代治,等. α-取代苯并噻吩钌乙炔及钌乙烯配合物的合成、表征、电化学及光谱电化学性质[J]. 无机化学学报,2016,32(4):641-648. | [18] | Ou Y P,Jiang C,Liu S H,et al. Synthesis, Characterization, and Properties of Anthracene-Bridged Bimetallic Ruthenium Vinyl Complexes [RuCl(CO)(PMe3)3]2(μ-CH=CH-Anthracene-CH=CH)[J]. Organometallics,2011,30(21):5763-5770. | [19] | Linseis M,Záliš S,Zabel M,et al. Ruthenium Stilbenyl and Diruthenium Distyrylethene Complexes:Aspects of Electron Delocalization and Electrocatalyzed Isomerization of the Z-Isomer[J]. J Am Chem Soc,2012,134(40):16671-16692. |
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