13–17 Sept 2021 Virtual Conference
Virtual
Europe/Vienna timezone
Thank you very much for your participation!

Nitrogen-containing mesoporous carbons via nanocasting for CO2 capture and energy storage applications

16 Sept 2021, 12:20
20m
Room 1

Room 1

Oral Presentation A4. Materials for catalysis and porous materials A4_Materials for catalysis and porous materials

Speaker

Ms Elisa Maruccia (Department of Applied Science and Technology (DISAT), Politecnico di Torino)

Description

In this work, nitrogen-containing ordered mesoporous carbons (NOMCs) are proposed as CO2 adsorbents. The nanocasting approach, using ordered mesoporous silica hard templates, was exploited for tuning the textural features of the carbonaceous adsorbents and therefore optimizing their capture performances and the kinetics of gas diffusion. Moreover, an eco-friendly nitrogen-containing carbon source was chosen as a precursor, in order to introduce basic sites useful to promote the interaction with the acidic CO2 molecule, thus fostering a selective adsorption in a gas mixture.
CMK-8 materials were prepared using KIT-6 templates [1], varying the pyrolysis temperature in order to evaluate the role of microporosity and nitrogen species (amount and type of N inclusions, i.e. pyridinic, pyrrolic and graphitic) in CO2 adsorption.
An extensive characterization of the ordered mesoporous architecture (low-angle XRD, FESEM, TEM and N2 physisorption at 77K), microporosity (CO2 isotherms at 273K) and surface chemical properties by XPS was carried out.
CO2 capture tests were performed in different conditions of temperature and pressure. An adsorption of 1.05 mmol/g (4.6% weight increase) was achieved at 30 °C and 90 kPa in a pure CO2 flow. Also selectivity in a mixture with N2 and reusability upon cycling was investigated.
The described NOMCs can be applied not only for CO2 up-take, but also in energy storage and conversion devices (e.g., lithium or sodium based batteries), photocatalysis or electrocatalytic reduction of CO2. For these applications, they can be used as-synthesized or decorated with specifically selected metal oxides and testing is now in progress in our laboratories.

[1] F. Kleitz, S.H. Choi, R. Ryoo, Cubic Ia3d large mesoporous silica: Synthesis and replication to platinum nanowires, carbon nanorods and carbon nanotubes, Chem. Commun. 3 (2003) 2136–2137. https://doi.org/10.1039/b306504a.

Speaker Country Italy

Author

Ms Elisa Maruccia (Department of Applied Science and Technology (DISAT), Politecnico di Torino)

Co-authors

Dr Mirtha Lourenço (Istituto Italiano di Tecnologia - IIT, Centre for Sustainable Future Technologies (CSFT)) Mrs Tatiana Priamushko (Department of Inorganic Chemistry – Functional Materials, Faculty of Chemistry, University of Vienna) Dr Mattia Bartoli (Department of Applied Science and Technology (DISAT), Politecnico di Torino) Dr Sergio Bocchini (Istituto Italiano di Tecnologia - IIT, Centre for Sustainable Future Technologies (CSFT)) Prof. Freddy Kleitz (Department of Inorganic Chemistry – Functional Materials, Faculty of Chemistry) Prof. Claudio Gerbaldi (Department of Applied Science and Technology (DISAT), Politecnico di Torino)

Presentation materials

There are no materials yet.