EVOLUTION OF OPTICAL-ABSORPTION AND SUPERCONDUCTIVITY IN BI-2212 AND 2223 OXIDES INTERCALATED BY METAL-PHTHALOCYANINES - A SYSTEMATIC STUDY AS A FUNCTION OF INTERCALATION LEVEL

被引:15
作者
GRIGORYAN, L [1 ]
YAKUSHI, K [1 ]
LIU, CJ [1 ]
TAKANO, S [1 ]
WAKATA, M [1 ]
YAMAUCHI, H [1 ]
机构
[1] ISTEC,SUPERCONDUCT RES LAB,KOTO KU,TOKYO 135,JAPAN
来源
PHYSICA C | 1993年 / 218卷 / 1-2期
关键词
D O I
10.1016/0921-4534(93)90278-X
中图分类号
O59 [应用物理学];
学科分类号
摘要
Exposure to vapors of the metal-phthalocyanines MPc (M = Zn, Ni, Fe or Pb) brings about a systematical variation of optical and superconducting properties of Bi-2212 and 2223 high-T(c) oxides. With increasing level of MPc uptake, the spectral weight is gradually transferred from the low to the high-frequency regions, accompanied by a decrease of T(c), diamagnetic response and magnetic hysteresis. Two different types of evolution patterns were observed: the first was characterized by a sharp change at the lowest level of MPc uptake (T(c), hysteresis), while the second featured a gradual evolution (intensities of the electronic absorption bands, diamagnetism). The heavily intercalated Bi-oxides are brightly colored non-conducting materials with well-resolved vibrational features due to both the intercalated MPc molecules and the host oxides. The above evolution patterns are ascribed to a combination of two mechanisms: the decrease of the charge carrier concentration as a result of electron doping into the host oxide, and the increase of anisotropy of the system due to incorporation of insulating MPc molecular layer between the Bi-O bilayers, thereby reducing the coupling along the c-axis. Hence, the intercalation by MPc is shown to be an effective technique for the electron doping leading to a reduction of the charge carrier concentration in the host oxides, in contrast to the intercalation by iodine which leads to a hole doping and to an increase of the number of charge carriers.
引用
收藏
页码:153 / 163
页数:11
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