1. Sensors for environment, health and security: advanced materials and technologies;Baraton,2008
2. -a, b, c, d] a: O. Oter, K. Ertekin, D. Topkaya, S. Alp, Emission-based optical carbon dioxide sensing with HPTS in green chemistry reagents: room-temperature ionic liquids, Analytical and bioanalytical chemistry, 386 (2006) 1225-1234. b: S.S. Hung, H.-C. Chang, I.-N. Chang, A portable Array-type optical fiber sensing instrument for real-time gas detection, Sensors 16 (2016) 2087 c: M. Z. Ongun, S. Oguzlar, Improvement of the CO2 Sensitivity: HPTS-Based Sensors along with Zn@SnO2 and Sn@ZnO Additives, ACS Omega 8 (2023) 29635−29645 d: M.Z. Ongun, S. Oguzlar, P.K. Yaman, O. Oter, Tuning CO2 sensing properties of HPTS along with newly synthesized coordination polymers (CPs) Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy, (2021) 263, 120224.
3. Optical carbon dioxide sensors based on silicone-encapsulated room-temperature ionic liquids;Borisov;Chem. Mater.,2007
4. Photophysical and optical oxygen sensing properties of tris (bipyridine) ruthenium (II) in ionic liquid modified sol–gel matrix;Oter;Mater. Chem. Phys.,2009
5. Ratiometric sensing of CO2 in ionic liquid modified ethyl cellulose matrix;Oter;Talanta,2008