2020
DOI: 10.3389/fenvs.2020.00100
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Characterization of TiO2 NPs in Radish (Raphanus sativus L.) by Single-Particle ICP-QQQ-MS

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Cited by 35 publications
(19 citation statements)
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“…73 Furthermore, ICP-QMS/QMS has been covered by principle studies and reviews on the ICP-MS reaction/collision cell technology, 72,74,75 gas chromatography (GC-) ICP-MS, 76 and high performance liquid chromatography (HPLC-) ICP-MS for quantitative profiling analysis of metalloids in biological samples, 77 respectively. ion-gas molecule reaction, 73 isotope, 3,4,22-24,26-28,43-47,62-66,68, single particle, 5,6,15,31,40,[54][55][56][57] and chemical speciation, 7,8,[10][11][12]16,76,77 respectively.…”
Section: References Investigatedmentioning
confidence: 99%
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“…73 Furthermore, ICP-QMS/QMS has been covered by principle studies and reviews on the ICP-MS reaction/collision cell technology, 72,74,75 gas chromatography (GC-) ICP-MS, 76 and high performance liquid chromatography (HPLC-) ICP-MS for quantitative profiling analysis of metalloids in biological samples, 77 respectively. ion-gas molecule reaction, 73 isotope, 3,4,22-24,26-28,43-47,62-66,68, single particle, 5,6,15,31,40,[54][55][56][57] and chemical speciation, 7,8,[10][11][12]16,76,77 respectively.…”
Section: References Investigatedmentioning
confidence: 99%
“…24 Single particle analysis. Single particle (or single cell) analysis based on ICP-QMS/QMS was reported for Ti, 5 (Nd, Eu, P), 6 (P, S, Fe, Cu, Zn, Pt), 15 C, 31 Fe, 40,[54][55][56][57] (Au, Ag, Pt), 56 and (Cr, Al, Ni, Cu, Au, Pt) 57 , respectively. Complementary software package for single particle analysis can facilitate the data processing, which can also be achieved by using spreadsheet software such as Microsoft Excel.…”
Section: Reaction Gases Used In the Measurement By Icp-qms/qmsmentioning
confidence: 99%
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“…The aggregation of n CeO 2 taken up by roots and the subsequent release of cerium ions inside roots prevents the translocation of n CeO 2 towards the aerial plant biomass [ 45 , 46 ]. According to [ 47 , 48 , 49 ], fewer and smaller in size n CeO 2 have detected the plant leaves. As for particle translocation, it has not conclusively clarified whether n CeO 2 can move via a symplastic or apoplastic pathway [ 50 ].…”
Section: Discussionmentioning
confidence: 99%
“…Release of engineered nanoparticles to the environment may end up and accumulate in edible plants, which is a potential pathway to human exposure. SP-ICP-MS has been used to study the uptake of nanoparticles by different types of plants in suitable growing media (hydroponic solutions 185,187,192 and soils [180][181][182][183][184]186,188,191,[193][194][195][196][197] ) containing known concentrations of nanoparticles of selected compositions and sizes. Edible plants like tomato, pumpkin, soybean, cucumber, thale cress, garden cress, white mustard, lettuce, kale, collard green, wheat, rice, soybean and radish have been selected for these experiments.…”
Section: Scenario 22: In Vitro In Vivo and Ex Vivo (Eco)toxicological Testsmentioning
confidence: 99%