Nano-scale nickel hydroxide was pre pared by precipitate transformatio n method in the paper£(r)Effect of rinse pH on the agglomeration degree and elec trochemical performance of nano£-sc ale Ni £¨OH£(c)£2 w...Nano-scale nickel hydroxide was pre pared by precipitate transformatio n method in the paper£(r)Effect of rinse pH on the agglomeration degree and elec trochemical performance of nano£-sc ale Ni £¨OH£(c)£2 was investigated£(r)The mea-surement results of XRD and TEM indic ate that the prepared nano£-scale Ni £¨OH£(c)2 isβ?-phase,the grain size is in the rang of 10?50nm,and rinse pH exerts a great influence on the agglomera tion degree of nano£-scale Ni £¨OH£(c)£2 £(r)The agglomeration of material becom es very obvious when rinse pH £1/211£?and the density of nano£-scale Ni £¨OH£(c)2 is enhanced obviously£(r)Cyclic voltammetry£¨CV£(c)and simulate cells experiment show t hat nano£-scale Ni £¨OH£(c)2 with suitable agglomeration degree have better electrochemical CV performa nce than those with ideal disperse Ni £¨OH£(c)2 and micron Ni £¨OH£(c)2 £?and its proton diffusion coefficie nt is also the highest£(r)It can elevate the discharge potential platform and prolongs discharge tim e,so the utilization ratio of Ni £¨OH£(c)£2 is raised£(r)展开更多
文摘Nano-scale nickel hydroxide was pre pared by precipitate transformatio n method in the paper£(r)Effect of rinse pH on the agglomeration degree and elec trochemical performance of nano£-sc ale Ni £¨OH£(c)£2 was investigated£(r)The mea-surement results of XRD and TEM indic ate that the prepared nano£-scale Ni £¨OH£(c)2 isβ?-phase,the grain size is in the rang of 10?50nm,and rinse pH exerts a great influence on the agglomera tion degree of nano£-scale Ni £¨OH£(c)£2 £(r)The agglomeration of material becom es very obvious when rinse pH £1/211£?and the density of nano£-scale Ni £¨OH£(c)2 is enhanced obviously£(r)Cyclic voltammetry£¨CV£(c)and simulate cells experiment show t hat nano£-scale Ni £¨OH£(c)2 with suitable agglomeration degree have better electrochemical CV performa nce than those with ideal disperse Ni £¨OH£(c)2 and micron Ni £¨OH£(c)2 £?and its proton diffusion coefficie nt is also the highest£(r)It can elevate the discharge potential platform and prolongs discharge tim e,so the utilization ratio of Ni £¨OH£(c)£2 is raised£(r)