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Studies on the solid state reactions of coordination conpounds——XLⅤⅢ.The effect of KSCN on the thermal decomposition of cobalt(Ⅲ)-ammine complexes 被引量:7
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作者 ZHENG,Li-Min XIN,Xin-Quan Coordination Chemistry Institute,Nanjing University,Nanjing 210008 Part XLVⅡ of this series:Chin.J.Chem.,11,21(1993) 《Chinese Journal of Chemistry》 SCIE CAS CSCD 1993年第3期225-230,共8页
The evolved gaseous analysis (EGA),infrared spectra,and XRD have been applied to the study of solid state reactions of KSCN with five cobalt(Ⅲ)-ammine complexes:[Co- (NH_3)_5N_3]Cl_2,[Co(NH_3)_5(NO_2)]Cl_2,[Co(NH_3)_... The evolved gaseous analysis (EGA),infrared spectra,and XRD have been applied to the study of solid state reactions of KSCN with five cobalt(Ⅲ)-ammine complexes:[Co- (NH_3)_5N_3]Cl_2,[Co(NH_3)_5(NO_2)]Cl_2,[Co(NH_3)_5(H_2O)]Cl_3,[Co(NH_3)_5Cl]Cl_2,and [Co(NH_3)_6]Cl_3 in a hydrogen atmosphere.It is found that the existence of KSCN shifts the thermal decom- position of these complexes to a lower temperature.The corresponding peak temperatures are near 140℃.The effect of KSCN is discussed and kinetic parameters of deammine reactions are calculated. 展开更多
关键词 SCN Studies on the solid state reactions of coordination conpounds The effect of KSCN on the thermal decomposition of cobalt ammine complexes XL
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Synthesis, Characterization and Cytotoxicity of Ammine/Methylamine Platinum(Ⅱ) Complexes with Carboxylates
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作者 ZHANG Jin-chao SHEN Yong YANG Meng-su 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2006年第3期278-282,共5页
Seven novel platinum (Ⅱ) complexes [ Pt(Ⅱ) (NH3) (CH3NH2)X2] (Ⅰ-Ⅶ ) ( X: CH3COO^-, CH2CICOO^- , CHCI2COO^- , C6H5-COO^- , p-CH3O--C6H4-COO^- , p-NH2-C6H4-COO^- , p-NO2--C6H4- COO^-) were prepared and ... Seven novel platinum (Ⅱ) complexes [ Pt(Ⅱ) (NH3) (CH3NH2)X2] (Ⅰ-Ⅶ ) ( X: CH3COO^-, CH2CICOO^- , CHCI2COO^- , C6H5-COO^- , p-CH3O--C6H4-COO^- , p-NH2-C6H4-COO^- , p-NO2--C6H4- COO^-) were prepared and characterized by means of elemental analysis, molar conductivity, thermal analysis, IR, UV, and ^1H NMR spectrometries. The cytotoxicity against HCT-8, BGC-823, MCF-7, EJ, and HL-60 cell lines increases in the following sequence: cisplatin 〉 Ⅳ 〉 Ⅴ 〉 Ⅵ 〉 Ⅶ 〉 Ⅰ 〉 Ⅱ 〉 Ⅲ. Moreover, the complexes ( Ⅰ --Ⅻ) display substantially greater activities agaist EJ and HL-60 cell lines than those against the cell lines from other carcinomas. They can induce a concentration-dependent accumulation of HL-60 cells in the G2/M phase of the cell cycle as cisplatin. There is no significant correlation between total DNA platination levels and cytotoxicity of the complexes. 展开更多
关键词 ammine/methylamine platinum(Ⅱ) complex SYNTHESIS CYTOTOXICITY Cell cycle: DNA-binding
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Thermochemical Heat Storage Performance in the Gas/Liquid-Solid Reactions of SrCl2 with NH3
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作者 Kazuki Kuwata Soichirou Masuda +2 位作者 Noriyuki Kobayashi Takuya Fuse Toru Okamura 《Natural Resources》 2016年第11期655-665,共11页
Thermochemical heat storage is a promising technology for improving energy efficiency through the utilization of low-grade waste heat. The formation of a SrCl<sub>2</sub> ammine complex was selected as the... Thermochemical heat storage is a promising technology for improving energy efficiency through the utilization of low-grade waste heat. The formation of a SrCl<sub>2</sub> ammine complex was selected as the reaction system for the purpose of this study. Discharge characteristics were evaluated in a packed bed reactor for both the gas-solid reaction and the liquid-solid reaction. The average power of the gas-solid reaction was influenced by the pressure of the supplied ammonia gas, with greater powers being recorded at higher ammonia pressure. For the liquid-solid reaction, the obtained average power was comparable to that obtained for the gas-solid reaction at 0.2 MPa. Moreover, the lower heat transfer resistance in the reactor was observed, which was likely caused by the presence of liquid ammonia in the system. Finally, the short-term durability of the liquid-solid reaction system was demonstrated over 10 stable charge/discharge cycles. 展开更多
关键词 Thermochemical Heat Storage SrCl2 ammine Complex Formation Gas/Liquid-Solid Reaction
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