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Compositionally and structurally disordered multiphase nickel hydroxide positive electrode for alkaline rechargeable electrochemical cells

机译:组成和结构无序的碱性可充电电化学电池多相氢氧化镍正极

摘要

A positive electrode for use in alkaline rechargeable electrochemical cells comprising: a material comprising a compositionally and structurally disordered multiphase nickel hydroxide host matrix which includes at least one modifier chosen from the group consisting of F, Li, Na, K, Mg, Ba, Ln, Se, Nd, Pr, Y, Co, Zn, Al, Cr, Mn, Fe, Cu, Zn, Sc, Sn, Sb, Te, Bi, Ru, and Pb. A process for forming a high loading uniformly distributed multiphase substantially nitrate free sintered positive electrode for use in an alkaline rechargeable electrochemical cell, the process comprising: (1) fabricating sintered electrode material by forming a slurry of nickel powder, water, carboxy methyl cellulose binder, methyl cellulose binder, and a poly(ethylene oxide) polymer; spreading the slurry on a preoxidized perforated nickel substrate; drying the slurry; and sintering the slurry; (2) impregnating the sintered electrode material using multiple impregnation cycles to attain high loading, where each impregnation cycle comprises the steps of: placing the sintered electrode material on a rack; dipping the rack into nickel nitrate; allowing the rack to drip dry; dipping the dried rack into NaOH solution; spraying the rack in a first tank with deionized water overflowing from a second tank; dipping the rack in the second tank filled with deionized water overflowing from a third tank; dipping the rack in the third tank filling with deionized water at a rate of 8-10 gpm; drying the rack; and flipping the rack to attain uniform deposition of material; where in the median dip cycle and in the final dip cycle of the multiple impregnation cycles, the step of dipping the rack into nickel nitrate is replaced by a step of dipping the rack into cobalt nitrate to produce an enriched cobalt surface; and (3) forming the impregnated sinter into positive electrode material by presoaking the impregnated sinter in NaOH presoak tanks to substantially eliminate nitrates; brushing the presoaked impregnated sinter in a surface brushing station; charging the brushed impregnated sinter; discharging the charged impregnated sinter; rinsing the discharged impregnated sinter; and drying the rinsed impregnated sinter to complete the formation of positive electrode material.
机译:一种用于碱性可再充电电化学电池的正电极,包括:一种材料,该材料包括组成和结构上无序的多相氢氧化镍主体基质,该基质包括至少一种选自F,Li,Na,K,Mg,Ba,Ln的改性剂。 ,Se,Nd,Pr,Y,Co,Zn,Al,Cr,Mn,Fe,Cu,Zn,Sc,Sn,Sb,Te,Bi,Ru和Pb。形成用于碱性可再充电电化学电池的高负载均匀分布的多相,基本上无硝酸盐的烧结正极的方法,该方法包括:(1)通过形成镍粉,水,羧甲基纤维素粘合剂的浆料来制造烧结电极材料。 ,甲基纤维素粘合剂和聚环氧乙烷聚合物;将浆料分散在预氧化的穿孔镍基材上;干燥浆液;烧结浆料; (2)使用多个浸渍循环对烧结电极材料进行浸渍以获得高负载,其中每个浸渍循环包括以下步骤:将烧结电极材料放置在架子上;将架子浸入硝酸镍中;让架子滴干;将干燥的架子浸入NaOH溶液中;从第二水箱溢出的去离子水喷洒到第一水箱中的架子上;将架子浸入盛有从第三罐溢出的去离子水的第二罐中;以8-10加仑/分钟的速度将机架浸入装有去离子水的第三槽中;干燥机架;翻转机架以获得均匀的材料沉积;在多个浸渍循环的中值浸入循环和最终浸入循环中,将支架浸入硝酸镍的步骤由将支架浸入硝酸钴以产生富钴表面的步骤代替; (3)通过将浸渍后的烧结体预浸渍在NaOH预浸渍槽中以基本上消除硝酸盐,将浸渍后的烧结体形成为正极材料。在表面涂刷站刷涂预浸的烧结矿;给刷过的浸渍烧结炉充电;释放带电的浸渍烧结矿;冲洗排出的浸渍烧结矿;干燥漂洗过的浸渍烧结物以完成正极材料的形成。

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