| Literature DB >> 33479295 |
Rasool Pelalak1,2, Roozbeh Soltani3, Zahra Heidari4, Rahime Eshaghi Malekshah5, Mohammadreza Aallaei6, Azam Marjani7,8, Mashallah Rezakazemi9, Saeed Shirazian10.
Abstract
Experimental and computational works were carried out on a new type of mesoporous silica. In the experimental section, functionalized hollow mesosilica spheres were prepared via a facile technique and then evaluated using some analytical techniques (FESEM, TEM, L-XRD, FTIR, BET-BJH, and TGA). The obtained results revealed that the synthesized material had hollow structure with a diamino-grafted porous shell. The molecular separation of crystal Violet (CV) and neutral Red (NR) dyes from water were investigated by adsorption process using the synthesized powder. Influence of adsorbent loading was evaluated as adsorption ability and dyes removal efficiency. Also, the obtained modeling results revealed appropriate fitting of data with non-linear Langmuir model. The theoretical studies were employed to study the adsorption and removal mechanism of cationic (CV and NR) and anionic (orange II (OII)) dyes using molecular dynamics calculations. Moreover, the simulation outcomes provided valuable information about quantum chemical properties including the HOMO-LUMO maps, chemical reactivity, global softness (σ) and hardness (η) for silica-linker-water-dyes components.Entities:
Year: 2021 PMID: 33479295 PMCID: PMC7820229 DOI: 10.1038/s41598-020-80566-w
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379