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1、酸性氧化电位水涂层钛阳极的制备与性能第39卷第9期2011年9月同济大学(自然科学版)JOURNALOFmNGjIUNIVERSITY(NATURALSCIENCE)V0I.39No.9Sep.2011文章编号:0253—374X(2O11)09—1318—06DOI:10.3969/j.issn.0253—374x.2011.09.012酸性氧化电位水涂层钛阳极的制备与性能曾新平,赵宇晟,唐文伟,郑春燕(1.同济大学生命科学与技术学院,上海200092;2.同济大学化学系,上海200092)摘要:以RuOa—Sn02
2、一Ti02为金属氧化物涂层,通过电极性能表征对涂层配方进行研究,分析Ru对酸性氧化电位水涂层钛阳极性能的影响,探索烧结温度和热处理时间对涂层晶粒大小及表面形貌的影响.试验结果表明,Ru是阳极具备电催化活性的主要组分,对涂层表面几何结构的形成,析氯反应催化活性的增强及电极寿命的提高,均起着主要作用.Ru的摩尔分数小于30%时,未出现单质金属钌和锐钛矿相T,涂层晶型呈理想的金红石晶型;Ru的摩尔分数为25%时,电极涂层的强化寿命最长.综合考虑涂层阳极的性能与成本,Ru的最佳摩尔分数为25%.烧结温度对涂层晶粒大小及表面形貌
3、影响显着,温度过低,涂层晶粒发育不完全;温度过高,涂层开裂且晶粒明显长大.关键词:酸性氧化电位水;涂层钛阳极;Ru02一Sn02一Ti02;电化学性能中图分类号:0646.5文献标识码:APreparationProcessofCoatingTiAnodeforGeneratingElectrolyzedOxidizingWaterandItsEffectsZNVGXinping,ZtNOY~sheng,TANGWenwei.,ZI-INNGChunyan.(1.ColiegeofLifeSciencesandTech
4、nology,TongjiUniversity,Shanghai200092,China;2.DepartmentofChemistry,TongjiUniversity,Shanghai200092,China)Abstract:ToreducethepreparationcostsofcoatingTianodeforgeneratingelectrolyzedoxidizingwater(EOW),andimproveitselectrolysisefficiencyandservicelife,RuOe—Sn0
5、2一Ti02wereusedasmetaloxidecoatingtoanalyzetheeffectofRuontheperformanceofcoatingTianode.Theeffectsofsinteringtemperature,heattreatmenttimeonthepropertiesofcoatingTianodewereinvestigated.ResultsindicatethatRuprocesseselectrocatalyticactivity,andplaysavitalpartint
6、hegeometricalcoatingconfiguration,收稿日期:基金项目:第一作者:通讯作者:reinforcementofcatalyticactivityinchlorinedissociationreactionandtheanodelongevity%enRuscalesbelow30%,thereisnosighofelementrutheniumoranatasetitaniumdioxide,andthegeometricalcoatingconfigurationisaperfectret
7、ilestructure:Whenitis25%,durationofanodeisthelongest.IftakingtheperformanceandcostofcoatingTianodeintoconsideration,themostsuitablemolpercentageofRuwas25%.Suitablesinteringtemperaturewasthekeyprocessmeans.Thecrystalgraingrowedincompletelyintoolowtemperature,whil
8、ethecoatingcrackincreasedandthecrystalgraingrowedtoobigintoohightemperature.Keywords:electrolyzedoxidizingwater;coatingTianode;RuO2一Sn02一Ti02;electrochemicalpropertie