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Asst. Prof. UTHEN THUBSUANG, Ph.D. Personal Information: Name in English Uthen Thubsuang E-mail: [email protected], Tel: +66 (0)75-672381 Affiliation: School of Engineering and Technology, , Nakhon Si Thammarat,

Research Interests: 1. Synthesis and Development of Porous Materials 2. Synthesis and Development of Polybenzoxazine 3. Synthesis and Development of Zeolite Nanoparticles 4. Surface Modification of Porous Materials 5. Applications of Porous Materials

Education: 2008 – 2014 Doctor of Philosophy (Polymer Science), The Petroleum and Petrochemical College, , , Thailand. 2004 – 2008 Bachelor of Engineering (Chemical Engineering), Faculty of Engineering and Industrial Technology, Silpakorn University, , Thailand.

Publications: Book Chapter 1. Thubsuang, U., Chaisuwan, T. (2017). Chapter 31 Polybenzoxazine for Hierarchical Nanoporous Materials, in: Ishida, H., Froimowicz, P. (Eds.), Advanced and Emerging Polybenzoxazine Science and Technology. Elsevier, Amsterdam, pp. 611-620.

Research Articles 2018 1. Manmuanpom, N., Thubsuang, U., Dubas, S.T., Wongkasemjit, S., Chaisuwan, T. (2018). Enhanced CO2 capturing over ultra-microporous carbon with nitrogen- active species prepared using one-step carbonization of polybenzoxazine for a sustainable environment. Journal of Environmental Management, 223, 779-786. 2

2017 2. Thubsuang, U., Laebang, S., Manmuanpom, N., Wongkasemjit, S., Chaisuwan, T. (2017). Tuning pore characteristics of porous carbon monoliths prepared from rubber wood waste treated with H3PO4 or NaOH and their potential as supercapacitor electrode materials. Journal of Materials Science, 52, 6837-6855. 2015 3. Thubsuang, U., Ishida, H., Wongkasemjit, S., Chaisuwan, T. (2015). Advanced and economical ambient drying method for controlled mesopore polybenzoxazine- based carbon xerogels: Effects of non-ionic and cationic surfactant on porous structure. Journal of Colloid and Interface Science, 459, 241-249. 4. Thubsuang, U., Sukanan, D., Sahasithiwat, S., Wongkasemjit, S., Chaisuwan, T. (2015). Highly sensitive room temperature organic vapor sensor based on polybenzoxazine-derived carbon aerogel thin film composite. Materials Science and Engineering: B, 200, 67-77. 2014 5. Thubsuang, U., Ishida, H., Wongkasemjit, S., Chaisuwan, T. (2014). Self-formation of 3D interconnected macroporous carbon xerogels derived from polybenzoxazine by selective solvent during the sol-gel process. Journal of Materials Science, 49, 4946-4961. 6. Thubsuang, U., Ishida, H., Wongkasemjit, S., Chaisuwan, T. (2014). Improvement in the pore structure of polybenzoxazine-based carbon xerogels through a silica templating method. Journal of Porous Materials, 21, 401-411. 2012 7. Thubsuang, U., Ishida, H., Wongkasemjit, S., Chaisuwan, T. (2012). Novel template confinement derived from polybenzoxazine-based carbon xerogels for synthesis of ZSM-5 nanoparticles via microwave irradiation. Microporous and Mesoporous Materials, 156, 7-15. 2009 8. Ramakul, P., Leepipatpiboon, N., Yamoum, C., Thubsuang, U., Bunnak, S., Pancharoen, U. (2009). Reduction of concentration polarization at feeding interface of a hollow fiber supported liquid membrane by using periodic operation. Korean Journal of Chemical Engineering, 26, 765-769.