Ph.D. position (m/f/d) Advanced Sustainable Thermoelectrics for Waste Heat Recovery - Modules
Ph.D. position (m/f/d) Advanced Sustainable Thermoelectrics for Waste Heat Recovery - Modules

Ph.D. position (m/f/d) Advanced Sustainable Thermoelectrics for Waste Heat Recovery - Modules

Dresden Vollzeit 36000 - 60000 € / Jahr (geschätzt)
Leibniz-Gemeinschaft

Auf einen Blick

  • Aufgaben: Ph.D. Position in nachhaltiger Thermoelektrik zur Abwärmerückgewinnung.
  • Arbeitgeber: Leibniz-Gemeinschaft Dresden, bekannt für innovative Forschung.
  • Mitarbeitervorteile: Flexible Arbeitszeiten, interdisziplinäres Team und Weiterbildungsmöglichkeiten.
  • Warum dieser Job: Beteilige dich an zukunftsweisender Forschung mit echtem Einfluss auf die Energieeffizienz.
  • Gewünschte Qualifikationen: MSc in Materialwissenschaften oder verwandten Bereichen, Teamfähigkeit und Kommunikationsstärke.

Das voraussichtliche Gehalt liegt zwischen 36000 - 60000 € pro Jahr.

L

Ph.D. position (m/f/d) Advanced Sustainable Thermoelectrics for Waste Heat Recovery – Modules

Leibniz-Gemeinschaft Dresden
neu
Status Offen
Jetzt bewerben

Bewirb dich auf der Webseite des Arbeitgebers

Was wir erwarten

Ausbildung
We welcome applications from individuals with an MSc degree (or those expecting to graduate before the appointment date) in Materials Science, Mechanical or Electrical Engineering, Material Processing, or related fields.
Erfahrung
Candidates with a strong passion for cutting-edge research. Candidates with excellent communication skills. Candidates with the ability to work effectively in a team.
Sprachen

  • Du beherrschst Englisch

Was wir bieten

Art der Stellenanzeige:
intern

Stellenbeschreibung

.

The Institute for Metallic Materials (Prof. K. Nielsch) of the IFW Dresden offers a
PhD position (m/f/d)

on the following topic: Advanced Sustainable Thermoelectrics for Waste Heat Recovery –Modules**

Project Overview:

Thermoelectric technology represents a promising avenue for using waste heat recovery to significantly improve energy efficiency and reduce CO2 emissions, supporting the imperative for a sustainable future. This research addresses the critical need to optimize the conversion of waste heat into usable energy, contributing to a cleaner and more efficient energy landscape. However, traditional materials like Bi2Te3 rely on toxic and rare elements, raising sustainability concerns, and their limited temperature range makes them unsuitable for many waste heat sources. Thus, it is essential to find sustainable materials with higher performance potential. Recent research indicates that sustainable materials, such as p-type MgAgSb, and n-type Mg3(Sb,Bi)2 and Mg2(Si,Sn), offer such potential. This project focuses on enhancing the performance of these materials and integrating them into high-performance modules capable of achieving high conversion efficiency from room temperature up to 550°C.

In pursuit of this research, we are inviting onePhD student to join our interdisciplinary team. The successful candidate will receive comprehensive training in fabricating thermoelectric modules** , focusing on segmented modules made from sustainable materials. Your main responsibility will be to produce high-quality and timely scientific results that align with our project objectives. You will also share your findings through publications in high-impact scientific journals and presentations at relevant conferences. Your work will be crucial in developing next-generation thermoelectric materials and improving the efficiency of future energy systems.

Profile:

We welcome applications from individuals with an MSc degree (or those expecting to graduate before the appointment date) in Materials Science, Mechanical or Electrical Engineering, Material Processing, or related fields. Prior experience with thermoelectric modules and FEM simulation is a valuable asset. We seek candidates with a strong passion for cutting-edge research, excellent communication skills, and the ability to work effectively in a team.

What we offer:

The selected candidate will receive a salary following TV-L rules (E13, 70%). The initial appointment is for one year, with the possibility of an extension for an additional two years based on performance. The anticipated start date is December 1, 2024, with the flexibility to start one month earlier or up to 3 months later.

In line with our commitment to diversity, we encourage qualified persons of all gender to apply, as we aim to increase representation in the field of science. Additionally, disabled applicants (m/f/d) will receive preferential consideration if they meet the requisite qualifications. Promising candidates will be invited for an interview.

044-24-2001 , no later than 30.08.2024 to

).

Über den Arbeitgeber

Was wir bieten

  • The selected candidate will receive a salary following TV-L rules (E13, 70%). The initial appointment is for one year, with the possibility of an extension for an additional two years based on performance. The anticipated start date is December 1, 2024, with the flexibility to start one month earlier or up to 3 months later.

Jetzt bewerben

Bewirb dich auf der Webseite des Arbeitgebers

Ph.D. position (m/f/d) Advanced Sustainable Thermoelectrics for Waste Heat Recovery - Modules Arbeitgeber: Leibniz-Gemeinschaft

Die Leibniz-Gemeinschaft bietet ein inspirierendes Arbeitsumfeld mit Fokus auf Innovation und Nachhaltigkeit, unterstützt durch umfassende Weiterbildungsmöglichkeiten und ein engagiertes Team.
Leibniz-Gemeinschaft

Kontaktperson:

Leibniz-Gemeinschaft HR Team

Diese Fähigkeiten machen dich zur top Bewerber*in für die Stelle: Ph.D. position (m/f/d) Advanced Sustainable Thermoelectrics for Waste Heat Recovery - Modules

Projektmanagement
Geschäftsanalyse
Ph.D. position (m/f/d) Advanced Sustainable Thermoelectrics for Waste Heat Recovery - Modules

Leibniz-Gemeinschaft

Jetzt bewerben

Bewerbungsfrist: 2026-10-09

Leibniz-Gemeinschaft
  • Ph.D. position (m/f/d) Advanced Sustainable Thermoelectrics for Waste Heat Recovery - Modules

    Dresden
    Vollzeit
    36000 - 60000 € / Jahr (geschätzt)
    Jetzt bewerben

    Bewerbungsfrist: 2026-10-09

  • Leibniz-Gemeinschaft

    Leibniz-Gemeinschaft

    10,000 - 15,000
  • Weitere offene Stellen bei Leibniz-Gemeinschaft

    Leibniz-Gemeinschaft
    Ph.D. position (m/f/d) Advanced Sustainable Thermoelectrics for Waste Heat Recovery-Materials

    Leibniz-Gemeinschaft

    Dresden Vollzeit 36000 - 60000 € / Jahr (geschätzt)
    Leibniz-Gemeinschaft
    Ph.D. position (m/f/d) Advanced Sustainable Thermoelectrics for Cooling

    Leibniz-Gemeinschaft

    Dresden Vollzeit 36000 - 60000 € / Jahr (geschätzt)
Ähnliche Positionen bei anderen Arbeitgebern
6
PhD position(m/f/d):Advanced Sustainable Thermoelectrics for Waste Heat Recovery-Modules 044-24-2001

600

Dresden Vollzeit
L
PhD position (m/f/d)

Leibniz-IFW Dresden e.V.

Dresden Vollzeit
Europas größte Jobbörse für Gen-Z
discover-jobs-cta
Jetzt entdecken
>