967
Views
20
CrossRef citations to date
0
Altmetric
Original Articles

Accurate quantification of tio2 nanoparticles collected on air filters using a microwave-assisted acid digestion method

, , &

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Ahmed A. H. Abdellatif. (2020) A plausible way for excretion of metal nanoparticles via active targeting. Drug Development and Industrial Pharmacy 46:5, pages 744-750.
Read now
Dibueng Prudence Mokoena, Sihle V. Mngadi, Masixole Sihlahla, Mogolodi K. Dimpe & Philiswa N. Nomngongo. (2019) Development of a Rapid and Simple Digestion Method of Freshwater Sediments for As, Cd, Cr, Cu, Pb, Fe, and Zn Determination by Inductively Coupled Plasma-Optical Emission Spectroscopy (ICP-OES): An Evaluation of Dilute Nitric Acid. Soil and Sediment Contamination: An International Journal 28:3, pages 323-333.
Read now
Donna J.H. Vosburgh, Jae Hong Park, Levi W.D. Mines, Imali A. Mudunkotuwa, T. Renée Anthony & Thomas M. Peters. (2017) Nonwoven textile for use in a nanoparticle respiratory deposition sampler. Journal of Occupational and Environmental Hygiene 14:5, pages 368-376.
Read now
Jae Hong Park, Imali A. Mudunkotuwa, Kathryn J. Crawford, T. Renée Anthony, Vicki H. Grassian & Thomas M. Peters. (2017) Rapid analysis of the size distribution of metal-containing aerosol. Aerosol Science and Technology 51:1, pages 108-115.
Read now

Articles from other publishers (16)

Claudia Moens, Enzo Lombi, Daryl L. Howard, Stefan Wagner, Justin L. Payne, Peter M. Kopittke & Casey L. Doolette. (2023) Mapping Phosphorus Availability in Soil at a Large Scale and High Resolution Using Novel Diffusive Gradients in Thin Films Designed for X-ray Fluorescence Microscopy. Environmental Science & Technology 58:1, pages 440-448.
Crossref
Xiaoquan Huang, Congcong Li, Tingting Wei, Na Liu, Yongshuai Yao, Zhihui Wang, Yuanyuan Hu, Qing Fang, Shujing Guan, Yuying Xue, Tianshu Wu, Ting Zhang & Meng Tang. (2024) Oropharyngeal aspirated Ag/TiO2 nanohybrids: Transformation, distribution and toxicity. Science of The Total Environment 908, pages 168309.
Crossref
Victor S. Cecon, Paulo F. Da Silva, Keith L. Vorst & Greg W. Curtzwiler. (2021) The effect of post-consumer recycled polyethylene (PCRPE) on the properties of polyethylene blends of different densities. Polymer Degradation and Stability 190, pages 109627.
Crossref
Simone Heilgeist, Ryo Sekine, Oz Sahin & Rodney A. Stewart. (2021) Finding Nano: Challenges Involved in Monitoring the Presence and Fate of Engineered Titanium Dioxide Nanoparticles in Aquatic Environments. Water 13:5, pages 734.
Crossref
Felix Horak, Andreas Nagl, Karin Föttinger & Andreas Limbeck. (2020) Application of micro-dried droplets for quantitative analysis of particulate inorganic samples with LA-ICP-MS demonstrated on surface-modified nanoparticle TiO2 catalyst materials. Microchimica Acta 187:12.
Crossref
Madeeha Nasrullah, Faiza Zareen Gul, Saad Hanif, Abdul Mannan, Sania Naz, Joham Sarfraz Ali & Muhammad Zia. (2020) Green and Chemical Syntheses of CdO NPs: A Comparative Study for Yield Attributes, Biological Characteristics, and Toxicity Concerns. ACS Omega 5:11, pages 5739-5747.
Crossref
Madjid Hadioui, Geneviève Knapp, Agil Azimzada, Ibrahim Jreije, Laurie Frechette-Viens & Kevin J. Wilkinson. (2019) Lowering the Size Detection Limits of Ag and TiO 2 Nanoparticles by Single Particle ICP-MS . Analytical Chemistry 91:20, pages 13275-13284.
Crossref
Weilan Zhang, Zhigang Yu, Pinhua Rao & Irene M.C. Lo. (2019) Uptake and toxicity studies of magnetic TiO2-Based nanophotocatalyst in Arabidopsis thaliana. Chemosphere 224, pages 658-667.
Crossref
Jin-Hee Lim, Dongryeoul Bae & Andrew Fong. (2018) Titanium Dioxide in Food Products: Quantitative Analysis Using ICP-MS and Raman Spectroscopy. Journal of Agricultural and Food Chemistry 66:51, pages 13533-13540.
Crossref
Fang Xu. (2018) Review of analytical studies on TiO2 nanoparticles and particle aggregation, coagulation, flocculation, sedimentation, stabilization. Chemosphere 212, pages 662-677.
Crossref
J. Vassallo, A. Besinis, R. Boden & R.D. Handy. (2018) The minimum inhibitory concentration (MIC) assay with Escherichia coli: An early tier in the environmental hazard assessment of nanomaterials?. Ecotoxicology and Environmental Safety 162, pages 633-646.
Crossref
Preston S. Watkins, Benjamin T. Castellon, Chiyen Tseng, Moncie V. Wright, Cole W. Matson & George P. Cobb. (2018) Validation of a Sulfuric Acid Digestion Method for Inductively Coupled Plasma Mass Spectrometry Quantification of TiO2 Nanoparticles. Bulletin of Environmental Contamination and Toxicology 100:6, pages 809-814.
Crossref
Catalina Bosch Ojeda & Fuensanta Sánchez Rojas. 2018. Reference Module in Chemistry, Molecular Sciences and Chemical Engineering. Reference Module in Chemistry, Molecular Sciences and Chemical Engineering.
Eliana Tassi, Francesca Bretzel, Manuele Scatena & Roberto Pini. 2018. Recent Advances in Environmental Science from the Euro-Mediterranean and Surrounding Regions. Recent Advances in Environmental Science from the Euro-Mediterranean and Surrounding Regions 265 268 .
Owen T. Butler, Warren R. L. Cairns, Jennifer M. Cook & Christine M. Davidson. (2017) Atomic spectrometry update – a review of advances in environmental analysis. Journal of Analytical Atomic Spectrometry 32:1, pages 11-57.
Crossref
Inmaculada De la Calle, Mathieu Menta & Fabienne Séby. (2016) Current trends and challenges in sample preparation for metallic nanoparticles analysis in daily products and environmental samples: A review. Spectrochimica Acta Part B: Atomic Spectroscopy 125, pages 66-96.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.