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SnF_2标准生成Gibbs自由能的测定 被引量:2
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作者 韩元山 王常珍 +1 位作者 田彦文 翟玉春 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2004年第9期876-879,共4页
采用LaF3单晶(掺杂)作为固体电解质,在多次抽空充氩气的操作箱内,将Pb,Sn磨细过筛,按照4∶1的比例分别将Pb,PbF2,Sn,SnF2混合并压成片·Pb PbF2为参比电极,Sn SnF2为工作电极,银丝为电极引线组成工作电池·电池的结构为:(+)Ag|P... 采用LaF3单晶(掺杂)作为固体电解质,在多次抽空充氩气的操作箱内,将Pb,Sn磨细过筛,按照4∶1的比例分别将Pb,PbF2,Sn,SnF2混合并压成片·Pb PbF2为参比电极,Sn SnF2为工作电极,银丝为电极引线组成工作电池·电池的结构为:(+)Ag|Pb,PbF2|LaF3单晶(掺杂)|Sn,SnF2|Ag(-)·用高阻数字电压表准确测定了电池在293 15~353 15K范围内的电动势·以两种PbF2标准生成Gibbs自由能数据和电池电动势为基础,计算得到SnF2标准生成自由能同温度的关系·电池电动势测量的实验误差远远小于PbF2标准生成Gibbs自由能数据中所给定的误差,采用两种不同的PbF2标准生成Gibbs自由能数据所得到的SnF2标准生成自由能的数值,彼此之间的偏差很小·所以上述两种计算结果都是可靠的· 展开更多
关键词 Gibbs自由能 SnF2 LaF3固体电解质 电池电动势 PbF2 误差
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Analysis of Ground-state Zero-field Splitting for Mn^(2+) Ions in[Co(H_(2)O)]XY_(6) (X=Si,Sn,Pt;Y=F,Cl)
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作者 LI Jufen SU Juan +3 位作者 YI Xuebin TANG Bin WU Xinhui ZHONG Shuirong 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2021年第4期595-599,共5页
The electron paramagnetic spectra of trigonal Mn^(2+) centers in[Co(H_(2)O)_(6)]SiF6,[Co(H_(2)O)_(6)]SnF6,and[Co(H_(2)O)_(6)]PtCl6 crystals were studied on the basis of the complete energy matrices for a d5 configurat... The electron paramagnetic spectra of trigonal Mn^(2+) centers in[Co(H_(2)O)_(6)]SiF6,[Co(H_(2)O)_(6)]SnF6,and[Co(H_(2)O)_(6)]PtCl6 crystals were studied on the basis of the complete energy matrices for a d5 configuration ion in a trigonal ligand field.When Mn^(2+) is doped in the[Co(H_(2)O)_(6)]SiF6,[Co(H_(2)O)_(6)]SnF6,and[Co(H_(2)O)_(6)]PtCl6 crystals crystals,there is a similar local distortion.The experimental results show that the local lattice structure around a trigonal Mn^(2+) center has an elongation distortion along the crystalline C3 axis.From the EPR calculation,the local lattice structure parameters R=2.278A,θ=52.6406? for[Co(H_(2)O)_(6)]SiF6,R=2.280,θ=52.4936° for[Co(H_(2)O)_(6)]SnF6 and R=2.244A,θ=53.0616? for[Co(H_(2)O)_(6)]PtCl6 were determined. 展开更多
关键词 [Co(H_(2)O)_(6)]SiF6 [Co(H_(2)O)_(6)]SnF_(6)and[Co(H_(2)O)_(6)]PtCl_(6) local lattice structure distortion EPR spectrum ligand-fields theory
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