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1. Conversion of WastePaper into Dissolving Pulp: A Path for Circular Bioeconomy.

2. Amorphous Cellulose: Graphene Oxide Composite Bead.

3. Ionic liquid treatment for increasing the wet strength of cellulose paper.

4. Study of Cellulose Dissolution in ZnO/NaOH/Water Solvent Solution and Its Temperature-Dependent Effect Using Molecular Dynamics Simulation.

5. Using cupriethylenediamine (CED) solution to decrease cellulose fibre network strength for removal of pulp fibre plugs.

6. Investigations for the use and recyclability of the ionic liquid [MTBDH][AcO] as a solvent in air‐gap‐wet spinning process.

7. Synthesis and application of functionalized ionic liquids-based imidazolium as solvent for cotton fibre cellulose dissolution.

8. Synthesis of N-oxyethylene substituted imidazolium-based zwitterions as a recyclable solvent for cellulose dissolution.

9. A study elucidating the relation between cellulose dissolution and crystallinity after cellulase treatment at different doses.

10. A study elucidating the relation between cellulose dissolution and crystallinity after cellulase treatment at different doses.

11. Recycling of waste cotton fabrics into regenerated cellulose films through three solvent systems: A comparison study.

12. Swelling and dissolution of cellulose in binary systems of three ionic liquids and three co-solvents.

13. Novel Solvent Systems for Cellulose Dissolution.

14. The effect of the outermost fibre layers on solubility of dissolving grade pulp.

15. Superbase-based protic ionic liquids for cellulose filament spinning.

16. Fibre porosity development of dissolving pulp during mechanical and enzymatic processing.

17. Effect of alkali treatment of lower concentrations on the structure and tensile properties of Pakistan's coarse cotton fibre.

18. Synthesis of Quaternary Ammonium Room-Temperature Ionic Liquids and their Application in the Dissolution of Cellulose.

19. A critical review of manufacturing processes used in regenerated cellulosic fibres: viscose, cellulose acetate, cuprammonium, LiCl/DMAc, ionic liquids, and NMMO based lyocell.

20. Efficient transesterification reaction of cellulose with vinyl esters in DBU/DMSO/CO2 solvent system at low temperature.

21. Increased solubility of plant core pulp cellulose for regenerated hydrogels through electron beam irradiation.

22. Synthesis, characterization and cellulose dissolution capabilities of ammonium-based room temperature ionic liquids (RTILs).

23. Comparison of rheological properties of kraft and microcrystalline cellulose dissolved in lithium chloride/ N, N-dimethylacetamide.

24. Synthesis of cellulose acetate propionate and cellulose acetate butyrate in a CO/DBU/DMSO system.

25. Influence of cation on the cellulose dissolution investigated by MD simulation and experiments.

26. Dissolution Capacity of Novel Cellulose Solvents Based on Triethyloctylammonium Chloride.

27. On the dissolution of cellulose in tetrabutylammonium acetate/dimethyl sulfoxide: a frustrated solvent.

28. Room temperature dissolution of cellulose in tetra-butylammonium hydroxide aqueous solvent through adjustment of solvent amphiphilicity.

29. Fabrication and properties of cellulose-nanochitosan biocomposite film using ionic liquid.

30. Enhanced pre-treatment of cellulose pulp prior to dissolution into NaOH/ZnO.

31. The yield of cellulose precipitate from sub- and supercritical water treatment of various microcrystalline celluloses.

32. Dissolution of enzyme-treated cellulose using freezing-thawing method and the properties of fibres regenerated from the solution.

33. Dissolution of cellulose from different sources in an NaOH/urea aqueous system at low temperature.

34. Easy and Efficient Recovery of EMIMCl from Cellulose Solutions by Addition of Acetic Acid and the Transition from the Original Ionic Liquid to an Eutectic Mixture.

35. Comparison of Cellulose Dissolution Behavior by Alkaline and Sulfuric Acid Solvents and Their Films' Physical Properties.

36. Revisiting the Dissolution of Cellulose in NaOH as "Seen" by X-rays.

37. Preparation of Cellulose Films from Sustainable CO2/DBU/DMSO System.

38. Dissolution and Hydrolysis of Bleached Kraft Pulp Using Ionic Liquids.