The title compound,{Co[(C 2H 5) 2NCS 2] 3},has been prepared and its structure is determined by X ray diffraction with crystallographic data as follows:C 15 H 30 N 3S 6Co,Mr=503.7,monoclinic,space group C 2/c,a=14.105...The title compound,{Co[(C 2H 5) 2NCS 2] 3},has been prepared and its structure is determined by X ray diffraction with crystallographic data as follows:C 15 H 30 N 3S 6Co,Mr=503.7,monoclinic,space group C 2/c,a=14.105(2),b=10.299(3),c=17.059(3)?,β=110.15(1)°,V=2326.5? 3,Z=4,D c=1.466g/cm 3,μ=7.77cm -1 ,F(000)=1056,R=0.033,R W=0.04.展开更多
Pyrrolidine dithiocarbamic ammonium can cause a sensitive incision on the cathodic branch of dE/dt-E oscillogram at -0.80 V(vs.SCE) in 0.1 mol/L KCl solution. When Co. 2+、Ni. 2+、Cd. 2+、Ga. 3+ and In. 3+ are present...Pyrrolidine dithiocarbamic ammonium can cause a sensitive incision on the cathodic branch of dE/dt-E oscillogram at -0.80 V(vs.SCE) in 0.1 mol/L KCl solution. When Co. 2+、Ni. 2+、Cd. 2+、Ga. 3+ and In. 3+ are present in KCl solution containing pyrrolidine dithiocarbamic ammonium the depth of the incision varies. A linear relationship between the incision depth and concentration of the metal ions is established and the second-order differential simple oscillographic voltammetry is applied to quantitative determination for these ions. The cobalt ion in molecular sieve is also determined with satisfactory results.展开更多
文摘The title compound,{Co[(C 2H 5) 2NCS 2] 3},has been prepared and its structure is determined by X ray diffraction with crystallographic data as follows:C 15 H 30 N 3S 6Co,Mr=503.7,monoclinic,space group C 2/c,a=14.105(2),b=10.299(3),c=17.059(3)?,β=110.15(1)°,V=2326.5? 3,Z=4,D c=1.466g/cm 3,μ=7.77cm -1 ,F(000)=1056,R=0.033,R W=0.04.
文摘Pyrrolidine dithiocarbamic ammonium can cause a sensitive incision on the cathodic branch of dE/dt-E oscillogram at -0.80 V(vs.SCE) in 0.1 mol/L KCl solution. When Co. 2+、Ni. 2+、Cd. 2+、Ga. 3+ and In. 3+ are present in KCl solution containing pyrrolidine dithiocarbamic ammonium the depth of the incision varies. A linear relationship between the incision depth and concentration of the metal ions is established and the second-order differential simple oscillographic voltammetry is applied to quantitative determination for these ions. The cobalt ion in molecular sieve is also determined with satisfactory results.