The paper describes a measuring system and a measuring method to measure the Seebeck coefficient and the electrical conductivity of different bulk materials. Some improvements of the original setup allow a reduction of the achievable relative measurement uncertainty regarding the Seebeck coefficient to a few percent. This is demonstrated by the results of Seebeck coefficient measurements of metallic and different semiconducting samples
International audienceIn this review we discuss considerations regarding the common techniques used ...
The Seebeck coefficient is one of the key quantities of thermoelectric materials and routinely measu...
Thermoelectric materials can directly convert heat into electrical energy. The characterization of d...
We have developed a system for simultaneous measurement of the electrical conductivity and Seebeck c...
This work is focused on the characterization of thermoelectric reference materials with traceable Se...
Measurements of physical transport properties of thermoelectric materials are plagued by large uncer...
A computer controlled apparatus for the measurement of dc electrical conductivity and Seebeck coeffi...
A high temperature Seebeck coefficient and electrical resistivity measurement apparatus has been des...
Thermoelectric generators (TEGs) convert heat to electrical energy by means of the Seebeck effect. T...
A system for the simultaneous measurement of thermoelectric power and resistivity of one and/ or two...
An experimental setup has been designed and built for measuring the Seebeck coefficient of bulk ther...
Thermoelectric materials can convert heat directly into usable electrical energy. An important aim i...
An apparatus has been designed which allows simultaneous measurements of Seebeck coefficient and ele...
In this work, a measurement system for high-temperature thermal-conductivity measurements has been d...
An apparatus capable of rapid measurement of the Seebeck coefficient and electrical resistivity at ...
International audienceIn this review we discuss considerations regarding the common techniques used ...
The Seebeck coefficient is one of the key quantities of thermoelectric materials and routinely measu...
Thermoelectric materials can directly convert heat into electrical energy. The characterization of d...
We have developed a system for simultaneous measurement of the electrical conductivity and Seebeck c...
This work is focused on the characterization of thermoelectric reference materials with traceable Se...
Measurements of physical transport properties of thermoelectric materials are plagued by large uncer...
A computer controlled apparatus for the measurement of dc electrical conductivity and Seebeck coeffi...
A high temperature Seebeck coefficient and electrical resistivity measurement apparatus has been des...
Thermoelectric generators (TEGs) convert heat to electrical energy by means of the Seebeck effect. T...
A system for the simultaneous measurement of thermoelectric power and resistivity of one and/ or two...
An experimental setup has been designed and built for measuring the Seebeck coefficient of bulk ther...
Thermoelectric materials can convert heat directly into usable electrical energy. An important aim i...
An apparatus has been designed which allows simultaneous measurements of Seebeck coefficient and ele...
In this work, a measurement system for high-temperature thermal-conductivity measurements has been d...
An apparatus capable of rapid measurement of the Seebeck coefficient and electrical resistivity at ...
International audienceIn this review we discuss considerations regarding the common techniques used ...
The Seebeck coefficient is one of the key quantities of thermoelectric materials and routinely measu...
Thermoelectric materials can directly convert heat into electrical energy. The characterization of d...