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Theoretical study of stability of metal-N_4 macrocyclic compounds in acidic media 被引量:1
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作者 陈永婷 华星 陈胜利 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2016年第7期1166-1171,共6页
Fe and Co porphyrins and phthalocyanines are excellent catalysts for the oxygen reduction reaction (ORR) and are promising alternatives to Pt in fuel cells. However, the stability of these molecular catalysts in aci... Fe and Co porphyrins and phthalocyanines are excellent catalysts for the oxygen reduction reaction (ORR) and are promising alternatives to Pt in fuel cells. However, the stability of these molecular catalysts in acidic media is poor. This study explores whether demetalation through proton ex- change causes these metal macrocyclic catalysts to be unstable in acidic media. We first present a theoretical scheme for investigating exchange reactions of metal ions in metal macrocyclic com- pounds with protons in acidic media. The equilibrium concentrations of metal ions in solution when various metalloporphyrins (MPs) and metallophthalocyanines (MPcs) are brought into contact with a strongly acidic solution (pH = 1) were then estimated using density functional theory calculations; these values were used to evaluate the stability of these metal macrocyclic compounds against demetalation in acidic media, The results show that Fe, Co, Ni, and Cu phthalocyanines and porphy- rins have considerable resistance to exchange with protons, whereas Cr, Mn, and Zn phthalocya- nines and porphyrins easily undergo demetalation through ion exchange with protons, This sug- gests that the degradation in the ORR activity of Fe and Co macrocyclic molecular catalysts and of carbon materials doped with Fe(Co) and nitrogen, which are believed to have metal-nitrogen coor- dination structures similar to those of macrocyclic molecules as ORR catalytic centers, is not the result of replacement of metal ions by protons. The calculation results show that electron-donating substituents could enhance the stability of Fe and Co phthalocyanines. 展开更多
关键词 MetalloporphyrinMetallophthalocyanineDe-metalationMetal ion-proton exchangeDFT calculationSubstituent group
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解析酞菁绿制造中的铜酞菁氯代反应机理
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作者 章华正 《上海染料》 2013年第6期23-29,共7页
该文解析酞菁绿制造中的铜酞菁氯代反应机理,铜酞菁具有双分子结构,是酞菁绿的氯原子取代度最多只有15个的根本原因.铜酞菁氯代可以在固-固反应体系中进行,三氯化铝将氯气转化为固态,参与反应,反应历程最关键的步骤是生成σ络合物中间体... 该文解析酞菁绿制造中的铜酞菁氯代反应机理,铜酞菁具有双分子结构,是酞菁绿的氯原子取代度最多只有15个的根本原因.铜酞菁氯代可以在固-固反应体系中进行,三氯化铝将氯气转化为固态,参与反应,反应历程最关键的步骤是生成σ络合物中间体,加入氯化亚铜作用的机理是防止中心离子脱落,加入氯化钠作用的机理是剥开铜酞菁粒子.铜酞菁氯代也可以在液-液反应体系中进行,焦硫酰氯将氯气转化为液态,参与反应,反应历程表明,氯磺酸很容易对铜酞菁进行酰氯化,首先得到磺酰氯基铜酞菁,然后的去SO2是整个反应的控制步骤. 展开更多
关键词 酞菁绿结构 五氯合铝 焦硫酰氯合氯 亲电反应 取代度计算
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