Mikailalsys Journal of Advanced Engineering International
Vol 3 No 3 (2026): Mikailalsys Journal of Advanced Engineering International

Energy-Efficient Molten-Salt-Shielded Synthesis of Ti3C2Tx MXene from Low-Cost Precursors and Its Integration into a Carbonized Luffa Sponge Composite for High-Performance Solar-Driven Interfacial Evaporation and Desalination

Mohammed Muktar Nono (Unknown)
Idris Misau Muhammad (Unknown)
Abdulrahman A. Abdulrasheed (Unknown)
Usman Dadum Hamza (Unknown)
Prashobh Karunakaran (Unknown)



Article Info

Publish Date
25 Aug 2026

Abstract

Scalable, energy-passive desalination technologies are urgently needed to address the growing freshwater crisis, particularly in off-grid and resource-constrained communities. This study develops an integrated materials pathway spanning the energy-efficient synthesis of Ti₃C₂Tₓ MXene from low-cost precursors to its application in a high-performance solar desalination platform. The Ti₃AlC₂ MAX phase was synthesized at 1100°C through a molten-salt-shielding synthesis (MS3) route using titanium dioxide (TiO₂), aluminum, and activated carbon in a NaCl–KCl eutectic medium with a 7:3 salt-to-precursor ratio, reducing the synthesis temperature by approximately 600°C relative to conventional solid-state routes. Selective HF/HCl etching subsequently converted the MAX phase into multilayer Ti₃C₂Tₓ MXene. Successful conversion was confirmed by a characteristic (002) diffraction shift to 7°, accordion-like morphology, disappearance of Al–C bonds, and a localized surface plasmon resonance peak at 792 nm. The MXene was deposited onto a carbonized luffa sponge (CLS) through controlled dip coating to produce an MC-CLS photothermal evaporator. Characterization revealed uniform MXene coverage, broadband solar absorptance of ≥0.95 across 200–1100 nm, retained hydrophilic surface terminations, and substantially enhanced thermal stability. Under one-sun illumination (1 kW m⁻²), MC-CLS achieved an average evaporation rate of 2.12 kg m⁻² h⁻¹ and a solar-to-steam conversion efficiency of 95%. The evaporation rate increased near-linearly to 7.79 kg m⁻² h⁻¹ at 5 kW m⁻², while the evaporator retained more than 94% of its performance after 21 wetting–drying cycles. Inductively coupled plasma optical emission spectrometry further confirmed that condensate produced from simulated seawater consistently met World Health Organization drinking-water standards for Na⁺, K⁺, Ca²⁺, and Mg²⁺. These findings establish an integrated pathway from low-cost MXene synthesis to solar water purification, offering a promising approach to scalable, durable, and energy-autonomous freshwater production.

Copyrights © 2026






Journal Info

Abbrev

MJAEI

Publisher

Subject

Chemical Engineering, Chemistry & Bioengineering Computer Science & IT Electrical & Electronics Engineering Engineering Mechanical Engineering

Description

Mikailalsys Journal of Advanced Engineering International [3046-8914 (Print) and 3046-9694 (Online)] is a double-blind peer-reviewed, and open-access journal dedicated to disseminating all information contributing to the understanding and development of the fields of engineering and technology ...