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Institute of Chemical Research of Catalonia (ICIQ) offers a Fully‑Funded PhD Programme in chemistry in partnership with URV. The pre‑doctoral contract runs up to 4 years full‑time, with a bundled training plan including seminars, instrumentation training, IP management, and career development.
Erasmus-like SHARP training is provided with a 2‑week intense year‑level focus. Applicants must hold a Master’s or equivalent in Chemistry, Pharmacy, Physics, Chemical Engineering or related fields and
Institute of Chemical Research of Catalonia ICIQ
Organisation/Company Institute of Chemical Research of Catalonia ICIQ Research Field Chemistry Researcher Profile First Stage Researcher (R1) Positions PhD Positions Application Deadline 8 Nov 2026 - 11:31 (Europe/Madrid) Country Spain Type of Contract Temporary Job Status Full-time Hours Per Week 37.5 Is the job funded through the EU Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No
The Fully-Funded PhD Programme offered by The Institute of Chemical Research of Catalonia (ICIQ) is aimed at exceptional graduate students from all over the world, to support their enrolment in a training and research programme in the field of chemistry, ultimately leading to the completion of a Doctoral Thesis in partnership with the Universitat Rovira i Virgili (URV). The programme will also contribute to their professional career development, in the fields of academia and industry.
This objective is achieved by:
The programme is addressed to highly qualified and talented graduate students with a keen interest in chemical research. Candidates should have an excellent academic record, strong commitment to scientific research and a solid working knowledge of English.
Admission to the programme is on a competitive basis.
See Annex 1
The programme is open to graduate students, from any nationality that fulfil the following eligibility criteria:
When in doubt regarding the eligibility criteria, applicants should contact ICIQ’s Human Resources unit at positions@iciq.es prior to submission of the application.
Candidates who fulfil the eligibility criteria will be evaluated according to the following evaluation criteria:
1. Submitted applications will be checked for eligibility and those not fulfilling all the criteria will be rejected. It won’t be possible to modify the application or to add missing documentation after the application has been submitted.
2. The selection will be based on the evaluation criteria described in Section III.
3. At the late stages of the selection process, only short‑listed candidates will be contacted for a personal interview.
4. All applicants will be notified of the final selection decision by mid November 2026.
Successful candidates will be requested to inform ICIQ whether they accept or decline the offer within five business days after being notified. The offer will be considered declined in the event that the applicant does not respond during this time.
ICIQ follows in its selection process a gender equality opportunity policy and a non‑discrimination policy on the basis of age, ethnic or social origin, religion or belief, sexual orientation, language and disability.
ICIQ is committed to promoting a work‑life balance for its employees and, as such, offers flexible working hours.
Call opening: October 5th 2026
Notification to candidates: As from November 9th 2026
Project Title: Light‑Driven Oscillatory Micromotor Systems.
Number of positions: 1
Reference: PhD 2026-22 KV
Description of the project: The project will focus on the development of photoactive micromotor systems capable of generating autonomous oscillatory dynamics and collective behavior. The main objective is to uncover how photocatalytic reactions, chemical gradients and interparticle interactions can be harnessed to create dynamic systems that communicate, synchronize and respond to their environment. The PhD student will design and characterize different types of micromotors, identify the mechanisms governing their oscillations, and develop strategies to control their dynamics using light and chemical stimuli. By combining photocatalysis, materials chemistry, optical microscopy and particle‑tracking analysis, the project aims to establish new principles for the design of adaptive and functional active systems.