NIST High Temp. Superconducting Materials (HTS) Database:

NIST Standard Reference Database 62

Last Update to Data Content: 1996

DOI: https://doi.org/10.18434/T4KP8J


Bibliographic Information

Title: Thermopower of 2122 Thallium High Temperature Superconductors
Author(s): V. Radhakrishnan, C.K. Subramaniam, R. Srinivasan, I.K. Gopalakrishnan, P.V.P.S.S. Sastry, J.V. Yakhmi, R.M. Iyer
Publication: Solid State Communications Volume: 73 Issue: 9 Year: 1990 Page(s): 637-640
Editor(s): Not Available
Publisher: Pergamon Press Ltd
Language: English
Notes: Not Available
Keywords: Material Specification, Critical Temperature, Resistivity (normal state), Thermoelectric Power

Materials and Properties

Tl:2212; [Tl-Ba-Ca-Cu-O]
Material Specification for Tl:2212; [Tl-Ba-Ca-Cu-O] Process: Solid State Reaction
Notes: The authors cite I.K. Gopalakrishnan et al., Appl. Phys. Lett., Vol. 53, 414 (1988), and summarize the procedure as follows. "Using a precursor matrix method single phase samples of the 2122 thallium compounds have been prepared... Neutron diffraction analysis confirmed the single phase nature of these materials."
Formula: Tl2Ba2CaCu2O8
Informal Name: Tl:2212
Chemical Family: Tl-Ba-Ca-Cu-O
Chemical Class: Oxide
Structure Type: Polycrystalline
Manufacturer: In House
Commercial Name: In House
Production Date:
Lot Number:
Production Form:


Critical Temperature for Tl:2212; [Tl-Ba-Ca-Cu-O]
Sample Number () Critical Temperature (K)
1 104
2 103
Measurement Method: Electrical resistance

Cautions: Unevaluated Data
No measurement details were reported.
Resistivity (normal state) for Tl:2212; [Tl-Ba-Ca-Cu-O]
Sample Number () Temperature (K) Resistivity (normal state) (mΩ·cm)
1 296 11.4
2 296 1.6
Measurement Method: Electrical resistance

Cautions: Unevaluated Data
No measurement details were reported.
Thermoelectric Power for Tl:2212; [Tl-Ba-Ca-Cu-O]
Sample Number () Temperature (K) Thermoelectric Power (µV/K)
1 103 0.02
1 106 0.94
1 108 2.21
1 115 3.38
1 116 4.05
1 117 4.40
1 125 4.77
1 144 4.53
1 174 3.89
1 206 3.21
1 214 2.96
1 221 2.97
1 235 2.47
1 239 2.32
2 97 0.13
2 101 2.48
2 105 4.72
2 111 9.61
2 118 11.15
2 125 11.57
2 132 11.48
2 168 10.31
2 183 9.63
2 196 9.34
2 199 8.94
2 215 8.36
2 224 8.17
2 233 7.57
2 247 7.090
Measurement Method: Thermopower
The authors cite R. Srinivasan et al., J. Phys., Vol. 29, L225 (1987), and summarize the procedure as follows. "The thermopower of these materials in the form of circular pellets approximately 8 mm diameter and about 1 mm thick was determined..."

Cautions: Evaluated Data
Digitized data were obtained from Figure 1 of the paper.