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- A new optical sensor for selective quantitation of uranium by the immobilization of arsenazo III on an agarose membrane. Fariba Nazari Serenjeh, Payman Hashemi, Ali Reza Ghiasvand, Fahimeh Rasolzadeh
, Anal. Methods
, 2016
, 8
, 4181
- Complications in complexation kinetics for lanthanides with DTPA using dye probe molecules in aqueous solution. K. Larsson, T. D. Cullen, S. P. Mezyk, R. G. McDowell, L. R. Martin
, RSC Adv.
, 2017
, 7
, 26507
- Hydrophobic–hydrophilic ionic liquids for the extraction and determination of metal ions with water-soluble reagents. S. V. Smirnova, T. O. Samarina, I. V. Pletnev
, Anal. Methods
, 2015
, 7
, 9629
- Simultaneous preconcentration of uranium and thorium in aqueous samples using cloud point extraction. Abhijit Saha, Sadhan Bijoy Deb, Arnab Sarkar, Manoj Kumar Saxena, B. S. Tomar
, RSC Adv.
, 2016
, 6
, 20109
- Kinetic analysis of the complexation of aqueous lanthanide(III) ions by arsenazo III †. Yanlong Shi, Edward M. Eyring, Rudi van Eldik
, J. Chem. Soc., Dalton Trans.
, 1998
, 967
- Polymer grafting on cellulose nanocrystals initiated by ceric ammonium nitrate: is it feasible under acid-free conditions?. Yunxiao Liu, Yunjie Lu, Hui Zhang, Xinran Liu, Zhengqing Kong, Lijuan Zhou, Heng Liu, Jianming Zhang
, Green Chem.
, 2021
, 23
, 8581
- Automated passive serial dilution microfluidic chip for calcium quantification based on the Arsenazo III method. Nusrat Tazin, Dhruv Patel, Christopher Jordon Lambert, Mohammad H. M. Shad, Jeff Campbell, Bruce K. Gale
, Sens. Diagn.
, 2022
, 1
, 810
- In situ detection of trace aerosol uranium using a handheld photometer and solid reagent kit. Yaxing Yang, Saijin Xiao, Ye Zhang, Longzhu Huang, Qingcheng Liu
, Anal. Methods
, 2013
, 5
, 4785
- Preconcentration and elimination of matrix
effects in XRF determinations of rare earth elements by preparing a thin film
through chemofiltration. Irma E. De Vito, Roberto A. Olsina, Adriana N. Masi
, J. Anal. At. Spectrom.
, 2001
, 16
, 275
- Biocompatible dextran-coated gadolinium-doped cerium oxide nanoparticles as MRI contrast agents with high T
1 relaxivity and selective cytotoxicity to cancer cells. A. L. Popov, M. A. Abakumov, I. V. Savintseva, A. M. Ermakov, N. R. Popova, O. S. Ivanova, D. D. Kolmanovich, A. E. Baranchikov, V. K. Ivanov
, J. Mater. Chem. B
, 2021
, 9
, 6586