A. M. Al Saleh, “A Review of the Synthesis, Structural, and Optical Properties of TiO₂ Nanoparticles: Current State of the Art and Potential Applications,” Crystals, vol. 15, no. 11, 944, 2025.
Y. S. Bukichev, L. M. Bogdanova, V. A. Lesnichaya, N. V. Chukanov, N. D. Golubeva, and G. I. Dzhardimalieva, “Mechanical and thermophysical properties of epoxy nanocomposites with titanium dioxide nanoparticles,” Applied Sciences, vol. 13, no. 7, 4488, 2023.
R. Ali and A. H. Alwan, “Titanium dioxide nanoparticles in dentistry: Multifaceted applications and innovations,” Future Dental Research, vol. 1, no. 1, pp. 12-25, 2023.
P. Gangwar and N. K. Sharma, “On the performance of indium tin oxide and titanium dioxide based plasmonic sensor: a theoretical evaluation,” Optical Engineering, vol. 65, no. 2, 027101, 2026.
G. K. Podagatlapalli, T. Jena, S. Maddila, S. Hamad, S. Vadavalli, C. Angani, and V. R. Soma, “Single-beam femtosecond Z-scan studies of bismuth and manganese co-doped titanium dioxide nanoparticles dispersed in ethanol,” RSC Advances, vol. 16, no. 12, pp. 11023-11035, 2026.
A. Hassein-Bey, N. Belgroune, A. Bessi, O. Kebour, M. Mohammedi, A. R. Touil, and A. Boudjemaa, “Structural Characterization and Photocatalytic Performance of PDMS/TiO₂ Nanocomposites Prepared via Ex Situ Dispersion Route,” Applied Mechanics, vol. 7, no. 1, 18, 2026.
K. Nagaraj, S. Radha, C. G. Deepa, K. Raja, V. Umapathy, N. P. Badgujar, et al., “Photocatalytic advancements and applications of titanium dioxide (TiO₂): Progress in biomedical, environmental, and energy sustainability,” Next Research, vol. 2, no. 1, 100180, 2025.
K. Drozdowska and J. Smulko, “Selective light-activation of sensing regions in hybrid Au-graphene-TiO₂ chemiresistive gas sensor,” Sensors and Actuators B: Chemical, vol. 437, 137764, 2025.
X. N. Qi, Y. Q. Zhu, H. Yuan, Z. X. Xu, H. R. Guo, and Z. L. Li, “Latest progress based on doped-TiO₂ photocatalysis materials: Fabrication and applications,” Journal of Water Process Engineering, vol. 78, 108791, 2025.
F. N. Almutairi, A. Ghitas, H. Alanazi, and M. A. Shahat, “Gamma-irradiated Chitosan@PVA@TiO₂ catalytic counter electrodes for enhanced dye-sensitized solar cell (DSSC) performance,” Synthetic Metals, vol. 311, 117841, 2025.
Y. Lu, D. Zhang, K. Guo, M. Sun, G. Yuan, S. Zhao, and X. Gu, “Surface modification of TiO₂ nanoparticles doped in photocured resins for the high refractive index optical waveguide,” Applied Surface Science, vol. 686, 162186, 2025.
A. Herrera, F. Londoño, and N. M. Balzaretti, “Structural and optical properties of Nd³⁺ doped GeO₂-PbO glass modified by TiO₂ for applications in laser and fiber amplifier,” Optical Materials, vol. 113, 110884, 2021.
S. Ge, D. Sang, L. Zou, Y. Yao, C. Zhou, H. Fu, et al., “A review on the progress of optoelectronic devices based on TiO₂ thin films and nanomaterials,” Nanomaterials, vol. 13, no. 7, 1141, 2023.
F. Latreche, R. Bensaha, N. Daldosso, A. Romeo, and F. Enrichi, “Nd-doped SiO₂/TiO₂ Bragg reflectors produced by sol-gel dip-coating deposition,” Journal of Sol-Gel Science and Technology, vol. 116, no. 2, pp. 1389-1400, 2025.
S. Waseem, T. Zeeshan, H. Tariq, F. Majid, M. D. Ali, Z. N. Kayani, and M. Amami, “The influence of transition metals (Fe, Co) on the structural, magnetic and optical properties of TiO₂ nanoparticles synthesized by the hydrothermal method,” Applied Physics A, vol. 128, no. 8, 690, 2022.
D. Dambournet, “Cationic vacancies in anatase (TiO₂): synthesis, defect characterization, and ion-intercalation properties,” Accounts of Chemical Research, vol. 55, no. 5, pp. 696-706, 2022.
M. A. Belgami and C. S. Rout, “NO₂ Gas Sensors Based on MXenes,” in MXene Based Gas Sensors, CRC Press, pp. 164-178, 2026.
K. V. Arundhathi, N. John, T. Abraham, K. G. Ambady, and B. Mathew, “Smart nanomaterials for sustainable green energy applications: environmental technology and sustainability,” in Environmental Technology and Sustainability, Apple Academic Press, pp. 259-282, 2024.
A. Tahir, M. A. Bujran, M. Rafiq, S. Irfan, J. Farooq, F. A. Sheikh, and B. Want, “Nickel-doped TiO₂ Nanofibers: A bifunctional material for sustainable hydrogen production and chromium (VI) sensing,” Journal of Power Sources, vol. 664, 238950, 2026.
S. S. Scindia and P. N. Dange, “Redox-tuned core-shell Au nanoparticles encapsulated in benzene sulphonic acid-doped polypyrrole for multiplexed toxic gas detection,” Journal of Nanoparticle Research, vol. 28, no. 2, 46, 2026.
N. H. Thang and N. C. Hien, “Environmental and energy applications of green-synthesized semiconductor nanomaterials: from photocatalysis to smart sensors,” Ionics, pp. 1-36, 2026.
M. M. Seker Perez, C. Boyraz, and L. Arda, “Synthesis, structure, and magnetic properties of (Co/Ce) co-doped ZnO nanoparticles,” Journal of Materials Science: Materials in Electronics, vol. 37, no. 5, 392, 2026.
M. A. Issa and K. A. Aadim, “Optical and structural characterization of ZnO:NiO nano composite prepared by pulsed laser deposition method,” Journal of Optics, vol. 54, pp. 2357-2362, 2025.
T. H. Mubarak, K. H. Hassan, and Z. M. A. Abbas, “Using X-ray diffraction and scanning electron microscope to study zinc oxide nanoparticles prepared by wet chemical method,” Advanced Materials Research, vol. 685, pp. 119-122, 2013.
S. Panda and S. K. Parida, “Studies on structural, microstructural, dielectric, electrical, and optical properties of Gd-doped BiFeO₃ ceramics and NTC thermistor application,” Materials Advances, 2026.
S. Göktaş and G. Şahin, “Impact of different Cu sources on the structure, surface morphology, optical and photocatalytic characteristics of sol-gel derived CuO thin films,” Türk Doğa ve Fen Dergisi, vol. 14, no. 1, pp. 13-20, 2025.
R. S. Ali, H. S. Rasheed, N. F. Habubi, and S. S. Chiad, “Synthesis and characterization of manganese-doped FeS₂ thin films via chemical spray pyrolysis,” Chalcogenide Letters, vol. 20, no. 1, pp. 63-72, 2023.
P. C. Chou, H. I. Chen, I. P. Liu, C. C. Chen, J. K. Liou, K. S. Hsu, and W. C. Liu, “On the ammonia gas sensing performance of a RF sputtered NiO thin-film sensor,” IEEE Sensors Journal, vol. 15, no. 7, pp. 3711-3715, 2015.
D. M. Shaker, R. R. Ahmed, A. M. Mohammad, T. H. Mubarak, and I. H. Mohamed, “Synthesis and characterization of CoZnFe₂O₄ ferrite nanoparticles by co-precipitation method for biomedical applications,” Passer Journal of Basic and Applied Sciences, vol. 6, no. 2, pp. 488-493, 2024.
M. A. Issa and K. A. Aadim, “Influence of Laser Energy on Structural and Optical Properties of ZnO(x):NiO(1−x) Films Prepared by Pulse Laser Deposition,” Journal of Optics, 2024.
S. S. Chiad, H. A. Noor, O. M. Abdulmunem, N. F. Habubi, M. Jadan, and J. S. Addasi, “Optical and structural performance of nanostructured Te thin films by (CSP) with various thicknesses,” Journal of Ovonic Research, vol. 16, no. 1, pp. 35-40, 2020.
M. A. Gatou, A. Syrrakou, N. Lagopati, and E. A. Pavlatou, “Photocatalytic TiO₂-based nanostructures as a promising material for diverse environmental applications: a review,” Reactions, vol. 5, no. 1, pp. 135-194, 2024.
A. A. Shihab, “Studying the Physical Properties of Silver Telluride Films Doped with Aluminum by the Effect of Annealing,” Ibn Al-Haitham Journal for Pure and Applied Sciences, vol. 38, no. 1, pp. 121-130, 2025.
M. A. Issa and K. A. Aadim, “Study the structural and optical properties of Zinc Oxide prepared by pulse laser deposition,” Journal of Optics, 2024.
R. Khan, N. Rahman, A. Prasannan, K. Ganiyeva, S. Chakrabortty, and S. Sangaraju, “Phase transition and bandgap modulation in TiO₂ nanostructures for enhanced visible-light activity and environmental applications,” Scientific Reports, vol. 15, no. 1, 20309, 2025.
T. Gakhar and A. Hazra, “Oxygen vacancy modulation of titania nanotubes by cathodic polarization and chemical reduction routes for efficient detection of volatile organic compounds,” Nanoscale, vol. 12, no. 16, pp. 9082-9093, 2020.
O. A. Chichan, N. F. Habubi, M. S. Othman et al., “The role of lithium doping on the physical properties of nanostructured NiO thin films for applications in optoelectronic devices: theoretical and experimental,” Journal of the Australian Ceramic Society, vol. 62, pp. 309-317, 2026.
E. S. Hassan, A. K. Elttayef, S. H. Mostafa, M. H. Salim, and S. S. Chiad, “Silver oxides nanoparticle in gas sensors applications,” Journal of Materials Science: Materials in Electronics, vol. 30, no. 17, pp. 15943-15951, 2019.
N. A. Alghurabi, T. H. Mubarak, A. K. Judran, and B. A. Hasoon, “Two-stage pulsed laser ablation for the production of Ag@TiO₂ core–shell nanoparticles with enhanced antimicrobial properties: An in silico study,” Plasmonics, vol. 20, pp. 10863-10888, 2025.
X. Zhang, P. Yan, B. Zhao, K. Liu, M. C. Kung, H. H. Kung, et al., “Selective hydrodeoxygenation of guaiacol to phenolics by Ni/anatase TiO₂ catalyst formed by cross-surface migration of Ni and TiO₂,” ACS Catalysis, vol. 9, no. 4, pp. 3551-3563, 2019.
S. V. Rathod, V. U. Magar, S. V. Rajmane, D. R. Sapate, and K. M. Jadhav, “Structural and optical characterization of Mg-doped nickel ferrite thin films,” Journal of Materials Science: Materials in Electronics, vol. 36, no. 3, 191, 2025.
S. K. Muhammad, E. S. Hassan, K. Y. Qader, K. H. Abass, S. S. Chiad, and N. F. Habubi, “Effect of vanadium on structure and morphology of SnO₂ thin films,” Nano Biomedicine and Engineering, vol. 12, no. 1, pp. 67-74, 2020.
M. H. Albanda Al-Timimi, W. H. Abdullah, and M. Z., “Influence of thickness on some physical characterization for nanostructured MgO thin films,” East European Journal of Physics, no. 2, pp. 173-181, 2023.
N. M. Kaawash, A. Almalki, F. K. Alanazi, and H. A. Al-Shamiri, “Enhanced UV photodetection properties of nanostructured ZnO films synthesized via spray pyrolysis using different zinc precursors,” Optical Materials, vol. 166, 117201, 2025.
M. I. Sayyed and S. Biradar, “Tuning optical properties and gamma-ray attenuation performance in PbO₂-modified borosilicate glasses,” Ceramics International, vol. 51, no. 19, pp. 29344-29353, 2025.
I. Ganesh, A. K. Gupta, P. P. Kumar, P. S. C. Sekhar, K. Radha, G. Padmanabham, and G. Sundararajan, “Preparation and characterization of Ni-doped TiO₂ materials for photocurrent and photocatalytic applications,” The Scientific World Journal, vol. 2012, no. 1, 127326, 2012.
M. T. McDowell, M. F. Lichterman, A. I. Carim, R. Liu, S. Hu, B. S. Brunschwig, and N. S. Lewis, “The influence of structure and processing on the behavior of TiO₂ protective layers for stabilization of n-Si/TiO₂/Ni photoanodes for water oxidation,” ACS Applied Materials & Interfaces, vol. 7, no. 28, pp. 15189-15199, 2015.
R. S. Ali, N. A. H. Al Aaraji, E. H. Hadi, K. H. Abass, N. F. Habubi, and S. S. Chiad, “Effect of lithium on structural and optical properties of nanostructured CuS thin films,” Journal of Nanostructures, vol. 10, no. 4, pp. 810-816, 2020.
M. G. Mulla and R. K. Pittala, “Fabrication and physicochemical properties of nickel oxide (NiO) thin films,” Ceramics International, vol. 51, no. 16, pp. 22255-22265, 2025.
S. Liu, M. Wang, G. Liu, N. Wan, C. Ge, S. Hussain, et al., “Enhanced NO₂ gas-sensing performance of 2D Ti₃C₂/TiO₂ nanocomposites by in-situ formation of Schottky barrier,” Applied Surface Science, vol. 567, 150747, 2021.
K. W. Huang, C. Sivakumar, C. H. Wu, C. W. Lee, W. E. Lee, F. Y. Tsai, and M. S. Ho, “Highly Efficient Room Temperature NO₂ Sensor Using Two-Phase TiOx Heterogeneous Nanoparticles,” ACS Applied Materials & Interfaces, vol. 16, no. 8, pp. 10485-10495, 2024.
M. Vasudeva, S. D. Varalakshmi, S. D. George, and V. K. Unnikrishnan, “Engineered liquid-repellent substrate for enhanced Laser-Induced Breakdown Spectroscopy (LIBS) of liquid samples,” Applied Surface Science, 166364, 2026.
B. Xue, W. Sun, Y. Bai, Z. Wang, C. Chen, X. X. Li, et al., “Laser energy modulation in laser-induced breakdown spectroscopy of marine aerosols: unraveling energy-coupling pathways and improving quantitative analysis,” Journal of Analytical Atomic Spectrometry, 2026.
Y. You, B. Xue, and J. Riedel, “Enhancement of LIBS plasma in air with organic solvent vapors,” Spectrochimica Acta Part B: Atomic Spectroscopy, vol. 236, 107309, 2026.
H. Enayati-Taloobaghi, S. Soltani, M. M. Shahidi, and E. Salahi, “Phase engineering and UV photoresponse of TiO₂ films on Si substrates modified with spatially distributed Au nanoparticles,” Journal of Materials Science: Materials in Electronics, vol. 37, no. 2, 155, 2026.
C. Z. Eldjilali, G. S. H. Thien, Z. N. Ng, B. K. Yap, K. B. Tan, H. A. Murthy, and K. Y. Chan, “Electrochromic performances of TiO₂ nanocrystals thin films for smart glass applications,” Thin Solid Films, vol. 815, 140636, 2025.
M. L. Vera, H. D. Traid, A. N. Dwojak, M. R. Rosenberger, and C. E. Schvezov, “Advances in nanostructured TiO₂ coatings for industrial applications,” in Industrial Applications of Nanoparticles, CRC Press, pp. 228-255, 2023.
N. Farooq, P. Kallem, Z. ur Rehman, M. I. Khan, R. K. Gupta, T. Tahseen, et al., “Recent trends of titania (TiO₂) based materials: A review on synthetic approaches and potential applications,” Journal of King Saud University - Science, vol. 36, no. 6, 103210, 2024.
N. S. Kamarudin, N. N. Yaakob, N. F. Sukor, H. D. Setiabudi, M. A. H. Aziz, and R. Jusoh, “Dual-Role Deep Eutectic Solvent-Assisted Electrosynthesis of TiO₂/KCC-1 for Enhanced Visible-Light Photocatalytic Desulfurization,” Arabian Journal for Science and Engineering, pp. 1-20, 2026.
A. J. Ghazai, O. M. Abdulmunem, K. Y. Qader, S. S. Chiad, and N. F. Habubi, “Investigation of some physical properties of Mn doped ZnS nano thin films,” in AIP Conference Proceedings, vol. 2213, no. 1, p. 020101, 2020.
S. B. Kim, M. S. Lee, S. Y. Lee, and S. J. Park, “Ni/Cu co-doping engineered TiO₂ for efficient solar-light-driven photocatalytic water treatment,” Surfaces and Interfaces, 108292, 2025.
M. K. Rashid, H. J. Mohammed, H. M. Hameed, M. W. Muayad, A. M. Hussien, A. T. Awad, and M. Alharbi, “The effect of titanium dioxide (TiO₂) nanoparticle concentration on the performance of polycrystalline silicon solar cells,” Journal of Umm Al-Qura University for Engineering and Architecture, vol. 16, no. 4, pp. 1753-1764, 2025.
R. Özmenteş and A. S. Hassanien, “Characterizations and optical discussions of thermally evaporated titanium dioxide thin films,” Journal of Optics, vol. 54, no. 3, pp. 1322-1340, 2025.
İ. Erol, G. Khamidov, R. Uktamjon, T. Davlat, and S. Tillayev, “Enhanced thermal, dielectric, and antimicrobial performance of fluorinated methacrylate and chitosan-based nanocomposites reinforced with TiO₂ nanowires,” Cellulose, vol. 32, no. 16, pp. 9429-9450, 2025.
X. Cheng, Y. Liu, W. Zhong, S. Li, Y. Li, Z. Zhao, et al., “An Ultra-Selective and Humidity-Resistant Room-Temperature-Operated NO₂ Sensor Based on Black TiO₂,” Advanced Science, vol. 12, no. 41, e09293, 2025.