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Original Articles

Electronic Spectra of Agtcnq and Cutcnq Charge-Transfer Compounds

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Pages 43-51 | Published online: 17 Oct 2011

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Read on this site (1)

E.I. Kamitsos. (1988) Infrared and Resonance Raman Spectroscopic Studies of AgTCNQ. Molecular Crystals and Liquid Crystals Incorporating Nonlinear Optics 161:1, pages 335-346.
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Articles from other publishers (22)

Pooja Sindhu, Anupam Prasoon, Shammi Rana & Nirmalya Ballav. (2020) Emergent Interface in Heterostructured Thin Films of Cu(II) and Cu(I) Coordination Polymers. The Journal of Physical Chemistry Letters 11:15, pages 6242-6248.
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Mahsa Mohammadtaheri, Rajesh Ramanathan, Sumeet Walia, Taimur Ahmed, Pabudi Weerathunge, Samuel R. Anderson, Matthew R. Field, Chaitali D. Dekiwadia, Anthony P. O’Mullane, Enrico Della Gaspera, Madhu Bhaskaran, Sharath Sriram & Vipul Bansal. (2018) Broadband light active MTCNQ-based metal–organic semiconducting hybrids for enhanced redox catalysis. Applied Materials Today 13, pages 107-115.
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Mahsa Mohammadtaheri, Rajesh Ramanathan & Vipul Bansal. (2016) Emerging applications of metal-TCNQ based organic semiconductor charge transfer complexes for catalysis. Catalysis Today 278, pages 319-329.
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Jinchong Xiao, Zongyou Yin, Yuechao Wu, Jun Guo, Yuhua Cheng, Hong Li, Yizhong Huang, Qing Zhang, Jan Ma, Freddy Boey, Hua Zhang & Qichun Zhang. (2011) Chemical Reaction Between Ag Nanoparticles and TCNQ Microparticles in Aqueous Solution. Small 7:9, pages 1242-1246.
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Sang Tae Park, David J. Flannigan & Ahmed H. Zewail. (2011) Irreversible Chemical Reactions Visualized in Space and Time with 4D Electron Microscopy. Journal of the American Chemical Society 133:6, pages 1730-1733.
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Kai Xiao, Jing Tao, Alex A. Puretzky, Ilia N. Ivanov, Scott T. Retterer, Stephen J. Pennycook & David B. Geohegan. (2008) Selective Patterned Growth of Single‐Crystal Ag–TCNQ Nanowires for Devices by Vapor–Solid Chemical Reaction. Advanced Functional Materials 18:19, pages 3043-3048.
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A. Arena, S. Patanè & G. Saitta. (1998) Study of a new organic semiconductor based onTCNQ and of its junction with doped silicon (TCNQ = 7, 7′, 8,8′ Tetracyanoquinodimethane). Il Nuovo Cimento D 20:7-8, pages 907-913.
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A. Arena, A. M. Mezzasalma, S. Patanè & G. Saitta. (2011) Investigation of the novel charge transfer complex Cd- TCNQ . Journal of Materials Research 12:7, pages 1693-1697.
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Sheng-Gao Liu, Yun-Qi Liu, Pei-Ji Wu, Dao-Ben Zhu, He Tien & Kong-Chang Chen. (1996) Characterisation and electrical property of molten-grown CuTCNQ film material. Thin Solid Films 289:1-2, pages 300-305.
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Z.Q. Xue, M. Ouyang, K.Z. Wang, H.X. Zhang & C.H. Huang. (1996) Electrical switching and memory phenomena in the Ag-BDCP thin film. Thin Solid Films 288:1-2, pages 296-299.
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Hongjun Gao, Zengquan Xue & Shijin Pang. (1996) Ionized cluster beam deposition of , Ag-TCNQ thin films and electrical switching phenomena. Journal of Physics D: Applied Physics 29:7, pages 1868-1872.
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Sheng-Gao Liu, Yun-Qi Liu & Dao-Ben Zhu. (1996) Amorphous semiconducting film containing nanometer particles of CuTCNQ: preparation, characterization and electrical switching property. Thin Solid Films 280:1-2, pages 271-277.
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Sheng-Gao Liu, Yun-Qi Liu, Pei-Ji Wu & Dao-Ben Zhu. (1996) Multifaceted Study of CuTCNQ Thin-Film Materials. Fabrication, Morphology, and Spectral and Electrical Switching Properties. Chemistry of Materials 8:12, pages 2779-2787.
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Hongjun Gao, Zengquan Xue & Quande Wu (Q D Wu). (1994) Electrical Phenomena of C 60 -Tetracyanoquinodimethane Thin Films . Chinese Physics Letters 11:12, pages 766-769.
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J. S. Zambounis, J. Mizuguchi, G. Rihs, O. Chauvet & L. Zuppiroli. (1994) Optical and electrical properties of evaporated 2,5-bis-methylthio-7,7′,8,8′-tetracyanoquinodimethane. Journal of Applied Physics 76:3, pages 1824-1829.
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A. Arena, G. Di Marco, R. Giorgi, A. M. Mezzasalma, S. Patanè & G. Saitta. (1994) Optical and electronic properties of Ag- and Cu-TCNQ in polymeric matrix. Surface and Interface Analysis 22:1-12, pages 511-514.
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G.C. Papavassiliou & V.M. Yartsev. (1992) On the modification of the optical properties of the TCNQ ion-radical salts by mechanical grinding. Chemical Physics Letters 200:1-2, pages 209-216.
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G. C. Papavassiliou. 1991. Mixed Valency Systems: Applications in Chemistry, Physics and Biology. Mixed Valency Systems: Applications in Chemistry, Physics and Biology 395 400 .
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