Electrochemical self-assembly of CuSCN-DAST hybrid thin films
暂无分享,去创建一个
S. Okada | N. S. Sariciftci | M. White | P. Stadler | Tsukasa Yoshida | He Sun | A. Masuhara | Lina Sun | Y. Tsuda | N. S. Sariçiftçi
[1] A. Kaminski-Cachopo,et al. Physical properties of annealed ZnO nanowire/CuSCN heterojunctions for self-powered UV photodetectors. , 2015, ACS applied materials & interfaces.
[2] C Vicario,et al. High efficiency THz generation in DSTMS, DAST and OH1 pumped by Cr:forsterite laser. , 2015, Optics express.
[3] N. S. Sariciftci,et al. Electrochemical Self-Assembly of Nanostructured CuSCN/Rhodamine B Hybrid Thin Film and Its Dye-Sensitized Photocathodic Properties , 2014, The journal of physical chemistry. C, Nanomaterials and interfaces.
[4] N. S. Sariciftci,et al. Substrate-Oriented Nanorod Scaffolds in Polymer–Fullerene Bulk Heterojunction Solar Cells , 2014, Chemphyschem : a European journal of chemical physics and physical chemistry.
[5] Jingbo Zhang,et al. Effect of anchoring groups on electrochemical self-assembly of ZnO/xanthene dye hybrid thin films. , 2010, Physical chemistry chemical physics : PCCP.
[6] Tsukasa Yoshida,et al. Cathodic electrodeposition of ZnO and CuSCN thin films in the presence of glutathione , 2009 .
[7] D. Lincot,et al. Electrodeposition of Inorganic/Organic Hybrid Thin Films , 2009 .
[8] Zhou Yang,et al. Large‐Size Bulk and Thin‐Film Stilbazolium‐Salt Single Crystals for Nonlinear Optics and THz Generation , 2007 .
[9] T. Yamaguchi,et al. Efficiency Increase by Insertion of Electrodeposited CuSCN Layer into ITO/Organic Solid Interface in Bulk Hetero-junction Solar Cells Consisting of Polythiophene and Fullerene , 2007 .
[10] S. Okada,et al. Single Crystal Preparation of DAST for Terahertz-Wave Generation , 2007 .
[11] Shuji Okada,et al. Widely tunable terahertz-wave generation in an organic crystal and its spectroscopic application , 2004 .
[12] William A. Mowers,et al. Fabrication of crystalline organic waveguides with an exceptionally large electro-optic coefficient , 2004 .
[13] Frank Lenzmann,et al. Charge Transport and Recombination in a Nanoscale Interpenetrating Network of n-Type and p-Type Semiconductors: Transient Photocurrent and Photovoltage Studies of TiO2/Dye/CuSCN Photovoltaic Cells , 2004 .
[14] Tsukasa Yoshida,et al. Improved photoelectrochemical performance of electrodeposited ZnO/EosinY hybrid thin films by dye re-adsorption. , 2004, Chemical communications.
[15] D. Lincot,et al. Cathodic Electrodeposition of ZnO/Eosin Y Hybrid Thin Films from Oxygen-Saturated Aqueous Solution of ZnCl2 and Eosin Y , 2003 .
[16] D. Lincot,et al. Electrochemical growth of epitaxial eosin/ZnO hybrid films , 2003 .
[17] N. Masciocchi,et al. J‐Aggregates Granting Giant Second‐Order NLO Responses in Self‐Assembled Hybrid Inorganic–Organic Materials , 2001 .
[18] S. Wada,et al. Difference-frequency terahertz-wave generation from 4-dimethylamino-N-methyl-4-stilbazolium-tosylate by use of an electronically tuned Ti:sapphire laser. , 1999, Optics letters.
[19] Hiromasa Ito,et al. ORGANIC NONLINEAR OPTICAL CRYSTAL DAST GROWTH AND ITS DEVICE APPLICATIONS , 1999 .
[20] H. Mao,et al. LASERS, OPTICS, AND OPTOELECTRONICS 635 Single-pass thin-film electro-optic modulator based on an organic molecular salt , 1999 .
[21] Peter Günter,et al. Electro‐optic properties of the organic salt 4‐N,N‐dimethylamino‐4′‐N′‐methyl‐stilbazolium tosylate , 1996 .
[22] Daniel T. Schwartz,et al. Efficient photo-hole injection from adsorbed cyanine dyes into electrodeposited copper(I) thiocyanate thin films , 1995 .
[23] H. Nakanishi,et al. Organic Nonlinear Optical Materials and Organic Microcrystals , 1994 .
[24] J. Perry,et al. Synthesis of organic salts with large second-order optical nonlinearities. , 1994, Science.
[25] Xiang Zhang,et al. Terahertz optical rectification from a nonlinear organic crystal , 1992 .
[26] Seth R. Marder,et al. Synthesis of Organic Salts with Large Second-Order Optical Nonlinearities , 1989, Science.
[27] M. White,et al. Control of Nanostructure and Crystallographic Orientation in Electrodeposited ZnO Thin Films via Structure Directing Agents , 2014 .
[28] T. Sugiura,et al. Cathodic electrodeposition of p-CuSCN nanorod and its dye-sensitized photocathodic property , 2011 .
[29] Yvonne Selk,et al. Cathodic electrodeposition of CuSCN thin films , 2008 .
[30] John Aurie Dean,et al. Lange's Handbook of Chemistry , 1978 .
[31] J. Gaz̆o,et al. The crystal structure of copper(I) thiocyanate and its relation to the crystal structure of copper(II) diammine dithiocyanate complex , 1976 .