[HTML][HTML] A Hydrofluoric Acid-Free Green Synthesis of Magnetic M.Ti2CTx Nanostructures for the Sequestration of Cesium and Strontium Radionuclide

J Iqbal, K Rasool, F Howari, Y Nazzal, T Sarkar… - Nanomaterials, 2022 - mdpi.com
Highlights An environmentally friendly MAX phase etching methodology was established
Sodium hydroxide produced magnetic layered M. Ti2CTx nanostructure M. Ti2C-AIII …

[PDF][PDF] A Hydrofluoric Acid-Free Green Synthesis of Magnetic M. Ti2CTx Nanostructures for the Sequestration of Cesium and Strontium Radionuclide. Nanomaterials …

J Iqbal, K Rasool, F Howari, Y Nazzal, T Sarkar… - 2022 - researchgate.net
MAX phases are the parent materials used for the formation of MXenes, and are generally
obtained by etching using the highly corrosive acid HF. To develop a more environmentally …

[HTML][HTML] A Hydrofluoric Acid-Free Green Synthesis of Magnetic M. Ti2CTx Nanostructures for the Sequestration of Cesium and Strontium Radionuclide

J Iqbal, K Rasool, F Howari, Y Nazzal, T Sarkar… - …, 2022 - ncbi.nlm.nih.gov
MAX phases are the parent materials used for the formation of MXenes, and are generally
obtained by etching using the highly corrosive acid HF. To develop a more environmentally …

A Hydrofluoric Acid-Free Green Synthesis of Magnetic M. Ti2CTx Nanostructures for the Sequestration of Cesium and Strontium Radionuclide

J Iqbal, K Rasool, F Howari, Y Nazzal… - …, 2022 - nchr.elsevierpure.com
An environmentally friendly MAX phase etching methodology was established Sodium
hydroxide produced magnetic layered M. Ti 2 CT x nanostructure M. Ti 2 CA III exhibited …

[PDF][PDF] A Hydrofluoric Acid-Free Green Synthesis of Magnetic M. Ti2CTx Nanostructures for the Sequestration of Cesium and Strontium Radionuclide. Nanomaterials …

J Iqbal, K Rasool, F Howari, Y Nazzal, T Sarkar… - 2022 - pdfs.semanticscholar.org
MAX phases are the parent materials used for the formation of MXenes, and are generally
obtained by etching using the highly corrosive acid HF. To develop a more environmentally …

A Hydrofluoric Acid-Free Green Synthesis of Magnetic M. Ti2CTx Nanostructures for the Sequestration of Cesium and Strontium Radionuclide

J Iqbal, K Rasool, F Howari, Y Nazzal, T Sarkar… - Nanomaterials, 2022 - diva-portal.org
MAX phases are the parent materials used for the formation of MXenes, and are generally
obtained by etching using the highly corrosive acid HF. To develop a more environmentally …

A Hydrofluoric Acid-Free Green Synthesis of Magnetic M. Ti2CTx Nanostructures for the Sequestration of Cesium and Strontium Radionuclide

J Iqbal, K Rasool, F Howari, Y Nazzal, T Sarkar… - …, 2022 - zuscholars.zu.ac.ae
MAX phases are the parent materials used for the formation of MXenes, and are generally
obtained by etching using the highly corrosive acid HF. To develop a more environmentally …

A Hydrofluoric Acid-Free Green Synthesis of Magnetic M.Ti2CTx Nanostructures for the Sequestration of Cesium and Strontium Radionuclide.

J Iqbal, K Rasool, F Howari, Y Nazzal… - Nanomaterials (Basel …, 2022 - europepmc.org
MAX phases are the parent materials used for the formation of MXenes, and are generally
obtained by etching using the highly corrosive acid HF. To develop a more environmentally …

A Hydrofluoric Acid-Free Green Synthesis of Magnetic M. Ti2CTx Nanostructures for the Sequestration of Cesium and Strontium Radionuclide

J Iqbal, K Rasool, F Howari… - Nanomaterials …, 2022 - pubmed.ncbi.nlm.nih.gov
MAX phases are the parent materials used for the formation of MXenes, and are generally
obtained by etching using the highly corrosive acid HF. To develop a more environmentally …

A Hydrofluoric Acid-Free Green Synthesis of Magnetic M. Ti2CTx Nanostructures for the Sequestration of Cesium and Strontium Radionuclide

J Iqbal, K Rasool, F Howari, Y Nazzal, T Sarkar… - …, 2022 - search.proquest.com
MAX phases are the parent materials used for the formation of MXenes, and are generally
obtained by etching using the highly corrosive acid HF. To develop a more environmentally …