| Literature DB >> 34999104 |
Samarjeet Singh Siwal1, Karamveer Sheoran2, Kirti Mishra2, Harjot Kaur2, Adesh Kumar Saini3, Vipin Saini4, Dai-Viet N Vo5, Hamed Yazdani Nezhad6, Vijay Kumar Thakur7.
Abstract
MXenes are a quickly growing and extended group of two-dimensional (2D) substances that have earned unbelievable analysis credits for various application areas within different manufacturing areas. Due to novel essential architectural and physicochemical properties shows good properties, such as elevated exterior area, living adaptability, strong electrochemistry, and great hydrophilicity. Given the fast progress within the structure and synthesis of MBNs for water treatment, quick updates on this research field are required to remove toxic substances, such as production approaches and characterization methods for the advantages and constraints of MXenes for pollutant degradation. MXenes are determined as a proposed road toward atmosphere-clean-up machinery to identify and decrease a pattern of hazardous resistant pollutants from environmental forms. Here, in this review article, we have been focused on describing the overview, novel synthesis methods, and characteristics of the MXene-based nanomaterials (MBNs) in the field for removing hazardous contaminants from environmental conditions. In the last, the utilizations of MBNs in water sanitization, organic solvent filtration, antibiotics degradation, pesticide degradation, heavy metals degradation, ions removal, bacterial pathogens degradation, along with the conclusion, challenges, and prospects in this field, have been discussed.Entities:
Keywords: Bacterial pathogens degradation; Electrical properties; MXene-based nanomaterials; Pesticide degradation; Water purification
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Year: 2022 PMID: 34999104 DOI: 10.1016/j.chemosphere.2022.133542
Source DB: PubMed Journal: Chemosphere ISSN: 0045-6535 Impact factor: 7.086