1. Ariga, K., Don’t Forget Langmuir–Blodgett Films 2020: Interfacial Nanoarchitectonics with Molecules, Materials, and Living Objects. Langmuir, 2020. 36(26): p. 7158-7180.
2. Langmuir, I., The mechanism of the surface phenomena of flotation. Transactions of the Faraday Society, 1920. 15(June): p. 62-74.
3. Blodgett, K.B., MONOMOLECULAR FILMS OF FATTY ACIDS ON GLASS. Journal of the American Chemical Society, 1934. 56(2): p. 495-495.
4. Abdollah, H. and M. Silvia, Journal of Biomedical Optics, 2011. 16(4): p. 046022.
5. Khasraw, S.S., et al., Materials Science and Engineering: B, 2021. 273: p. 115402.
6. Hassanzadeh, A., et al., Waveguide evanescent field fluorescence microscopy: Thin film fluorescence intensities and its application in cell biology. Applied Physics Letters, 2008. 92(23).
7. Guo, Y., F. Feng, and T. Miyashita, Macromolecules, 1999. 32(4): p. 1115-1118.
8. Swierczewski, M. and T. Burgi, Langmuir and Langmuir–Blodgett films of gold and silver nanoparticles. Langmuir, 2023. 39(6): p. 2135-2151.
9. Lambert, K., et al., Phase Transitions in Quantum‐Dot Langmuir Films. Angewandte Chemie International Edition, 2011. 50(50): p. 12058-12061.
10. Savin, S. and A.Y. Dubavik, Factors influencing the formation of Langmuir films of CdSe/ZnS colloidal quantum dots. Optics and Spectroscopy, 2018. 125: p. 777-782.
11. Shi, H.Y., et al., Advanced Functional Materials, 2010. 20(6): p. 958-964.
12. Choi, S.-W., et al., Patterning of Hierarchically Aligned Single-Walled Carbon Nanotube Langmuir− Blodgett Films by Microcontact Printing. Langmuir, 2010. 26(19): p. 15680-15685.
13. Jia, B. and L. Zou, Langmuir–Blodgett assembly of sulphonated graphene nanosheets into single-and multi-layered thin films. Chemical Physics Letters, 2013. 568: p. 101-105.
14. Pechkova, E. and C. Nicolini, Langmuir–Blodgett nanotemplates for protein crystallography. Nature Protocols, 2017. 12(12): p. 2570-2589.
15. Togashi, K., et al., Fabrication of Langmuir-Blodgett films using amphiphilic peptides. Journal of Nanoscience and Nanotechnology, 2012. 12(1): p. 568-572.
16. Soyer, H., et al., First Magnetic Observation of a Spin Crossover in a Langmuir–Blodgett Film. Advanced Materials, 1999. 11(5): p. 382-384.
17. Wu, J., et al., Generating new magnetic properties in organic–inorganic hybrids. Journal of Materials Chemistry C, 2017. 5(7): p. 1782-1788.
18. Liu, Z., et al., Flexible electronics based on inorganic nanowires. Chemical Society Reviews, 2015. 44(1): p. 161-192.
19. Chen, L.F., et al., Macroscopic‐scale three‐dimensional carbon nanofiber architectures for electrochemical energy storage devices. Advanced Energy Materials, 2017. 7(23): p. 1700826.
20. Nan, N., et al., Advanced Materials Technologies, 2019. 4(3): p. 1800338.
21. Tao, A., et al., Langmuir− Blodgett silver nanowire monolayers for molecular sensing using surface-enhanced Raman spectroscopy. Nano letters, 2003. 3(9): p. 1229-1233.
22. Lao, C.S., et al., ZnO nanobelt/nanowire Schottky diodes formed by dielectrophoresis alignment across Au electrodes. Nano Letters, 2006. 6(2): p. 263-266.
23. Whang, D., et al., Large-Scale Hierarchical Organization of Nanowire Arrays for Integrated Nanosystems. Nano Letters, 2003. 3(9): p. 1255-1259.
24. Pauzauskie, P.J., et al., Optical trapping and integration of semiconductor nanowire assemblies in water. Nature Materials, 2006. 5(2): p. 97-101.
25. Bentley, A.K., et al., Magnetic Manipulation of Copper−Tin Nanowires Capped with Nickel Ends. Nano Letters, 2004. 4(3): p. 487-490.
26. Smith, P.A., et al., Electric-field assisted assembly and alignment of metallic nanowires. Applied Physics Letters, 2000. 77(9): p. 1399-1401.
27. Park, J.U., et al., Angew Chem Int Ed Engl, 2006. 45(4): p. 581-5.
28. Zhang, H., et al., Blow-bubble to produce ceramic ultra-thin films. Ceramics International, 2018. 44(5): p. 5799-5802.
29. Mao, S., Recent advances in nanowire sensor assembly using laminar flow in open space. TrAC Trends in Analytical Chemistry, 2023. 159: p. 116918.
30. Ko, H. and V.V. Tsukruk, Liquid-crystalline processing of highly oriented carbon nanotube arrays for thin-film transistors. Nano letters, 2006. 6(7): p. 1443-1448.
31. Bellido, E., et al., Structuration and integration of magnetic nanoparticles on surfaces and devices. Small, 2012. 8(10): p. 1465-1491.
32. Pankhurst, Q.A., et al., Applications of magnetic nanoparticles in biomedicine. Journal of Physics D: Applied Physics, 2003. 36(13): p. R167.
33. Burhan Mohamed, K., et al., Langmuir–Blodgett films of magnetic nanowires. Materials Science and Engineering: B, 2023. 296: p. 116649.
34. Haehnel, V., et al., Towards smooth and pure iron nanowires grown by electrodeposition in self-organized alumina membranes. Acta Materialia, 2010. 58(7): p. 2330-2337.
35. Stanković, N.K., et al., ACS Sustainable Chemistry & Engineering, 2018. 6(3): p. 4154-4163.
36. Hussain, S.A., Langmuir-Blodgett Films a unique tool for molecular electronics. arXiv preprint arXiv:0908.1814, 2009.
37. Air, M., What and why: Langmuir-Blodgett films. 2010.