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1. Deacidification and consolidation of brittle book paper using bacterial cellulose composite with zinc oxide nanoparticles.

2. Improvement of breakdown and flashover properties against thermal aging of oil paper insulation through addition of TiO2 nanoparticles.

3. A Note of Caution on the Use of Calcium Nanoparticle Dispersions as Deacidifying Agents.

4. The Need for Experimental and Numerical Analyses of Thermal Ageing in Power Transformers.

5. Fast and easy synthesis of silver, copper, and bimetallic nanoparticles on cellulose paper assisted by ultrasound.

6. Grafted nanocellulose and alkaline nanoparticles for the strengthening and deacidification of cellulosic artworks.

7. Mapping absorbency in cellulosic fibres with iron tracers.

8. Surface Chemistry of Oil-Filled Organic Nanoparticle Coated Papers Analyzed Using Micro-Raman Mapping.

9. Optimization and Characterization of Paper-Made Surface Enhanced Raman Scattering (SERS) Substrates with Au and Ag NPs for Quantitative Analysis.

10. A Simple Paper Based Microfluidic Electrochemical Biosensor for Point-of-Care Cholesterol Diagnostics.

11. Nanoparticles from paper mills: A seasonal, numerical and morphological analysis.

12. Antimicrobial Properties of Silver Cations Substituted to Faujasite Mineral.

13. Paper as Active Layer in Inkjet-Printed Capacitive Humidity Sensors.

14. Nanoparticle Fillers Obtained from Wood Processing Wastes for Reinforcing of Paper.

15. Robust superhydrophobicity on paper: Protection of spray-coated nanoparticles against mechanical wear by the microstructure of paper.

16. Handwritten Oxide Electronics on Paper.

17. A paper-based multiplexed resonance energy transfer nucleic acid hybridization assay using a single form of upconversion nanoparticle as donor and three quantum dots as acceptors.

18. Clotrimazole and calcium hydroxide nanoparticles: A low toxicity antifungal alternative for paper conservation.

19. Lateral mapping of poly(styrene-co-maleimide) nanoparticle coatings on paper by confocal Raman microscopy.

20. Specular gloss versus surface topography for oil-filled nanoparticle coatings on paper.

21. A Simple and Versatile Approach for the Fabrication of Paper-Based Nanocatalysts: Low Cost, Easy Handling, and Catalyst Recovery.

22. Bactericidal paper trays doped with silver nanoparticles for egg storing applications.

23. Relation between optical non-contact profilometry and AFM roughness parameters on coated papers with oil-filled nanoparticles.

24. Calcium hydroxide nanoparticles in hydroalcoholic gelatin solutions (GeolNan) for the deacidification and strengthening of papers containing iron gall ink.

25. Functionalized paper—A readily accessible adsorbent for removal of dissolved heavy metal salts and nanoparticles from water.

26. Preparation of CNC-dispersed Fe3O4 nanoparticles and their application in conductive paper.

27. A paper-based resonance energy transfer nucleic acid hybridization assay using upconversion nanoparticles as donors and quantum dots as acceptors.

28. Biological coating of paper using silver nanoparticles.

29. Photocatalytic oxidation of ethanol using paper-based nano-TiO2 immobilized on porous silica: A modelling study.

30. Nanomaterial-enhanced paper-based biosensors.

31. Use of ZnO nanoparticles for protecting oil paintings on paper support against dirt, fungal attack, and UV aging.

32. Piezoelectric enhanced cross-linked multi-walled carbon nanotube paper.

33. Synthesis and inkjet printing of aqueous ZnS:Mn nanoparticles

34. Paper coatings with multi-scale roughness evaluated at different sampling sizes

35. Paper surfaces functionalized by nanoparticles

36. Sonochemical Coating of Paper by Microbiocidal Silver Nanoparticles.

37. Deacidification of paper using dispersions of Ca(OH)2 nanoparticles in isopropanol. Study of efficiency

38. How cellulose nanofibrils and cellulose microparticles impact paper strength—A visualization approach.

39. Transferring the structure of paper for mechanically durable superhydrophobic surfaces.

40. Nanomaterials for Combined Stabilisation and Deacidification of Cellulosic Materials—The Case of Iron-Tannate Dyed Cotton.