功能材料
功能材料
공능재료
JOURNAL OF FUNCTIONAL MATERIALS
2014年
z2期
49-53,58
,共6页
锌电极%组织结构%缺陷%织构%电化学行为
鋅電極%組織結構%缺陷%織構%電化學行為
자전겁%조직결구%결함%직구%전화학행위
zinc electrode%organization structure%defect%texture%electrochemical performance
在对锌多晶进行变形、退火等方式处理的基础上,运用金相分析法、X 射线衍射法、循环伏安法等方法,分析了金属锌的组织结构与电化学性能的关系。结果表明,锌单晶(002)晶面电极的氧化还原可逆性优于锌单晶(100)晶面电极,锌单晶(100)晶面电极的氧化和还原能力优于锌单晶(002)晶面电极;锌多晶电极的氧化性能和还原性能优于锌单晶电极;晶界、位错等缺陷会提高锌的溶解速度,同时电极表面的位错对还原过程中锌原子的沉积有利;晶粒的增大会减小晶界面积,使得锌电极的晶间腐蚀等局部腐蚀加剧,降低锌电极的耐蚀性,但是晶粒大小对电极电化学性能的影响相对于位错及其它缺陷要小得多。
在對鋅多晶進行變形、退火等方式處理的基礎上,運用金相分析法、X 射線衍射法、循環伏安法等方法,分析瞭金屬鋅的組織結構與電化學性能的關繫。結果錶明,鋅單晶(002)晶麵電極的氧化還原可逆性優于鋅單晶(100)晶麵電極,鋅單晶(100)晶麵電極的氧化和還原能力優于鋅單晶(002)晶麵電極;鋅多晶電極的氧化性能和還原性能優于鋅單晶電極;晶界、位錯等缺陷會提高鋅的溶解速度,同時電極錶麵的位錯對還原過程中鋅原子的沉積有利;晶粒的增大會減小晶界麵積,使得鋅電極的晶間腐蝕等跼部腐蝕加劇,降低鋅電極的耐蝕性,但是晶粒大小對電極電化學性能的影響相對于位錯及其它缺陷要小得多。
재대자다정진행변형、퇴화등방식처리적기출상,운용금상분석법、X 사선연사법、순배복안법등방법,분석료금속자적조직결구여전화학성능적관계。결과표명,자단정(002)정면전겁적양화환원가역성우우자단정(100)정면전겁,자단정(100)정면전겁적양화화환원능력우우자단정(002)정면전겁;자다정전겁적양화성능화환원성능우우자단정전겁;정계、위착등결함회제고자적용해속도,동시전겁표면적위착대환원과정중자원자적침적유리;정립적증대회감소정계면적,사득자전겁적정간부식등국부부식가극,강저자전겁적내식성,단시정립대소대전겁전화학성능적영향상대우위착급기타결함요소득다。
In this paper,the relationship was studied between the organizational structure and its electrochemical performance for the zinc electrode by metallurgical phase,XRD and cyclic voltammetry.The results show that the reversibility performance of Zn (002)single crystal was superior to Zn (100)and the oxidizing and deoxidi-zing abilities of the Zn (100)single crystal was superior to Zn (002).The oxidizing and deoxidizing abilities of Zn polycrystal was superior to Zn single crystal.In terms of Zn polycrystal,the dissolution was accelerated and the dislocation was of advantage for electrodeposition during the deoxidization due to a great deal of defect such as grain boundary and dislocation.The area of the grain boundary decreased due to grain growth.As a result, the local corrosion,such as the intercrystalline corrosion,was aggravated and the corrosion resistance of the Zn electrode was reduced.However,the effect of the grains size on the electrochemical performance of the Zn elec-trode was much less than the dislocation and other defects.