68
Views
60
CrossRef citations to date
0
Altmetric
Original Articles

Atomic Absorption Spectrometric and Spectrophotometric Trace Analysis of Uranium in Environmental Samples with N-p-MEthoxyphenyl-2-Furylacrylohydroxamic acid and 4-(2-Pyridylazo) Resorcinol

Pages 163-172 | Published online: 23 Sep 2006

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

Read on this site (2)

Dandan Ma, Yali Yuan, Xilin Xiao, Qiong Tang & Yangyang Gao. (2014) Ultrasensitive electrochemical biosensor for uranium using deoxyribozymes with amplification by gold nanoparticles. International Journal of Environmental Analytical Chemistry 94:11, pages 1139-1149.
Read now
Zhiliang Jiang, Lin Wei, Yi Zhang & Aihui Liang. (2013) Resonance scattering spectrum detection of trace using nanogold probe as catalyst of Cu(II)-glucose reaction. International Journal of Environmental Analytical Chemistry 93:4, pages 377-385.
Read now

Articles from other publishers (58)

Xiang-Lan Mao, Yuan-Jun Cai, Qiu-Xia Luo, Xin Liu, Qiao-Qiao Jiang, Cheng-Rong Zhang, Li Zhang, Ru-Ping Liang & Jian-Ding Qiu. (2024) Europium(III) Functionalized Covalent Organic Framework as Sensitive and Selective Fluorescent Switch for Detection of Uranium. Analytical Chemistry 96:12, pages 5037-5045.
Crossref
Amina A. Selim, A. B. Abdallah, Fathi S. Awad, Magdi E. Khalifa & Ahmed Fathi Salem Molouk. (2023) Electrochemical sensor based on amine- and thiol-modified multi-walled carbon nanotubes for sensitive and selective determination of uranyl ions in real water samples. RSC Advances 13:44, pages 31141-31150.
Crossref
Shravishtha Juyal, Tabassum-Abbasi, Tasneem Abbasi & S. A. Abbasi. (2023) An Analysis of Failures Leading to Fire Accidents in Hospitals; with Specific Reference to India. Journal of Failure Analysis and Prevention 23:3, pages 1344-1355.
Crossref
Tabassum-Abbasi, Naseer Hussain, Channgam Khamrang, Pratiksha Patnaik, Tasneem Abbasi & Shahid Abbas Abbasi. (2023) Different Species of Epigeic and Anecic Earthworms Cause Similarly Effective and Beneficial Biocomposting—A Case Study Involving the Pernicious Aquatic Weed Salvinia (Salvinia molesta, Mitchell). Life 13:3, pages 720.
Crossref
Tabassum-Abbasi, K. B. Chari, Tasneem Abbasi & S. A. Abbasi. 2023. Advances in Waste Management. Advances in Waste Management 177 192 .
D. M. Arjun, N. Pagadeeswar, Tabassum-Abbasi, Abhishek Nandan, Tasneem Abbasi & S. A. Abbasi. 2023. Advances in Waste Management. Advances in Waste Management 167 176 .
Bing Liu, Letian Li, Wenzhao Liu, Qianshan Chen & Zhaoyang Wu. (2022) Interpenetrating porous photonic crystal balls for rapid naked eye detection of uranyl ions. The Analyst 147:15, pages 3585-3592.
Crossref
Yulong Xu, Jiahui Wei & Xuwei Chen. (2022) Visible Light-Responsive Sulfone-Based Covalent Organic Framework as Metal-Free Nanoenzyme for Visual Colorimetric Determination of Uranium. Chemosensors 10:7, pages 248.
Crossref
Tabassum-Abbasi, Pratiksha Patnaik, Ranjan Rahi & Shahid Abbas Abbasi. (2022) A Circular Biorefinery-Integrating Wastewater Treatment with the Generation of an Energy Precursor and an Organic Fertilizer. Sustainability 14:9, pages 5714.
Crossref
Weihua Guo, Huiling Xu, Cheng Chen, Xiaohong Cao, Jianguo Ma & Yunhai Liu. (2022) Determination of U(VI) by differential pulse stripping voltammetry using a polydopamine/reduced graphene oxide nanocomposite modified glassy carbon electrode. Microchemical Journal 175, pages 107111.
Crossref
Pratiksha Patnaik, S. A. Abbasi & Tabassum-Abbasi. 2022. Advances in Behavioral Based Safety. Advances in Behavioral Based Safety 83 93 .
Tabassum-Abbasi, M. Nayeem-Shah, S. A. Abbasi & Tanseem Abbasi. 2022. Advances in Behavioral Based Safety. Advances in Behavioral Based Safety 43 54 .
S. Suresh, Tabassum-Abbasi, Tasneem Abbasi, N. Ramesh & S. A. Abbasi. 2022. Advances in Behavioral Based Safety. Advances in Behavioral Based Safety 211 218 .
Yaxuan Chen, Guocheng Liu, Xiuli Wang, Xue Lu, Na Xu, Zhihan Chang, Zhong Zhang & Xiaohui Li. (2021) Various carboxylates induced eight Zn( ii )/Cd( ii ) coordination polymers with fluorescence sensing activities for Fe( iii ), Cr( vi ) and oxytetracycline . CrystEngComm 23:46, pages 8077-8086.
Crossref
Selva Kumar R, Vetriarasu Venkatesan, R. Bhaskar, S. K. Ashok Kumar, Akella Sivaramakrishna, Kari Vijayakrishna, C. V. S. Brahmmananda Rao, N. Sivaraman & Suban K. Sahoo. (2021) Rapid detection strategies for the ultra-level chemosensing of uranyl ions. Dalton Transactions 50:41, pages 14706-14713.
Crossref
V. Venkata Sravani, Sarita Tripathi, B. Sreenivasulu, Satendra Kumar, S. Maji, C. V. S. Brahmmananda Rao, A. Suresh & N. Sivaraman. (2021) Post synthetically modified IRMOF-3 for efficient recovery and selective sensing of U( vi ) from aqueous medium . RSC Advances 11:45, pages 28126-28137.
Crossref
Jin Xiao Li, Qing Lin Guan, Zi Xin You, Yu Wang, Zhan Shi, Yong Heng Xing, Feng Ying Bai & Li Xian Sun. (2021) Achieving Multifunctional Detection of Th 4+ and UO 2 2+ in the Post‐Synthetically Modified Metal–Organic Framework and Application of Functional MOF Membrane . Advanced Materials Technologies 6:7.
Crossref
Guo‐Li Yang, Xiao‐Lei Jiang, Hang Xu & Bin Zhao. (2021) Applications of MOFs as Luminescent Sensors for Environmental Pollutants. Small 17:22.
Crossref
Qinghua Hu, Wenfeng Zhang, Qiang Yin, Yuyuan Wang & Hongqing Wang. (2021) A conjugated fluorescent polymer sensor with amidoxime and polyfluorene entities for effective detection of uranyl ion in real samples. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 244, pages 118864.
Crossref
Weihua Guo, Huiling Xu, Xiaohong Cao, Jianguo Ma & Yunhai Liu. (2020) A novel electrochemical detemination platform of uranyl ion based on silver nanodendrites-reduced graphene oxide. Microchemical Journal 158, pages 105134.
Crossref
Jingjing Qian, Nana Cao, Jian Zhang, Jinjin Hou, Qian Chen, Cheng Zhang, Yudie Sun, Shengjun Liu, Lifang He, Kui Zhang & Haibo Zhou. (2020) Field-portable ratiometric fluorescence imaging of dual-color label-free carbon dots for uranyl ions detection with cellphone-based optical platform. Chinese Chemical Letters 31:11, pages 2925-2928.
Crossref
Shanli Yang, Yingru Li, Shaofei Wang, Jingsong Xu, Lang Shao, Tao Gai, Hao Tang, Yiming Ren, Mingfu Chu & Bianyuan Xia. (2020) A novel synthesis of graphene quantum dots via thermal treatment of crude graphite oxide in a dry and alkaline condition, and their application in uranyl detection. Heliyon 6:9, pages e04533.
Crossref
Xudong Qin, Weiting Yang, Yonghang Yang, Dongxu Gu, Dongyu Guo & Qinhe Pan. (2020) A Zinc Metal–Organic Framework for Concurrent Adsorption and Detection of Uranium. Inorganic Chemistry 59:14, pages 9857-9865.
Crossref
Vishaka V. Halali, R Shwetha Rani, R Geetha Balakrishna & Srinivasa Budagumpi. (2020) Ultra-trace level chemosensing of uranyl ions; scuffle between electron and energy transfer from perovskite quantum dots to adsorbed uranyl ions. Microchemical Journal 156, pages 104808.
Crossref
Vishaka V. Halali & R. Geetha Balakrishna. (2020) An expeditious method for the ultra-level chemosensing of uranyl ions. Analytical Methods 12:8, pages 1070-1076.
Crossref
Gangqiang Qin, Weihua Wang, Aijun Du & Qiao Sun. (2020) Functionalized boron nitride monolayers as promising materials for uranyl ion capture: A first-principles study. Journal of Molecular Structure 1200, pages 127080.
Crossref
Seonae Lee, Ka Young Kim, Na Young Lim, Jin Hwan Jung, Ji Ha Lee, Myong Yong Choi & Jong Hwa Jung. (2019) Terpyridine-based complex nanofibers with Eu3+ as a highly selective chemical probes for UO22+. Journal of Hazardous Materials 378, pages 120713.
Crossref
Wen Yun, Lin Chen, Zao Yi, Yong Yi, Yongjian Tang & Lizhu Yang. (2019) Entropy-driven catalytic reaction-induced hairpin structure switching for fluorometric detection of uranyl ions. Microchimica Acta 186:9.
Crossref
Xuan He, Shaofei Wang, Yu Liu & Xiaolin Wang. (2019) Ultra-sensitive detection of uranyl ions with a specially designed high-efficiency SERS-based microfluidic device. Science China Chemistry 62:8, pages 1064-1071.
Crossref
Na Lin, Wensheng Ren, Jianing Hu, Bo Gao, Dengpeng Yuan, Xiaolong Wang & Jun Fu. (2019) A novel tetraphenylethene-based fluorescent sensor for uranyl ion detection with aggregation-induced emission character. Dyes and Pigments 166, pages 182-188.
Crossref
Xiaolong Wang, Rui Zeng, Shengnan Chu, Wei Tang, Na Lin, Jun Fu, Jiangrong Yang & Bo Gao. (2019) A quencher-free DNAzyme beacon for fluorescently sensing uranyl ions via embedding 2-aminopurine. Biosensors and Bioelectronics 135, pages 166-172.
Crossref
Pradeep Kumar Dewangan, Fahmida Khan, Kamlesh Shrivas & Vinayak Sahu. (2019) Determination of uranium in environmental sample by nanosensor graphene quantum dots. Journal of Radioanalytical and Nuclear Chemistry 320:3, pages 757-763.
Crossref
Zhao Zhang, Duo Zhang, Cen Shi, Wei Liu, Lanhua Chen, Yu Miao, Juan Diwu, Jianli Li & Shuao Wang. (2019) 3,4-Hydroxypyridinone-modified carbon quantum dot as a highly sensitive and selective fluorescent probe for the rapid detection of uranyl ions. Environmental Science: Nano 6:5, pages 1457-1465.
Crossref
Mengxia Hua, Sen Yang, Jiaqi Ma, Weiwei He, Liangju Kuang & Daoben Hua. (2018) Highly selective and sensitive determination of uranyl ion by the probe of CdTe quantum dot with a specific size. Talanta 190, pages 278-283.
Crossref
Sepehr Manochehry, Erin M. McConnell, Kha Q. Tram, Joseph Macri & Yingfu Li. (2018) Colorimetric Detection of Uranyl Using a Litmus Test. Frontiers in Chemistry 6.
Crossref
Xinfeng Chen, Kui Zhang, Huan Yu, Long Yu, Hongwei Ge, Ji Yue, Tianxin Hou, Abdullah M. Asiri, Hadi M. Marwani & Suhua Wang. (2018) Sensitive and selective fluorescence detection of aqueous uranyl ions using water-soluble CdTe quantum dots. Journal of Radioanalytical and Nuclear Chemistry 316:3, pages 1011-1019.
Crossref
Abhijit Saha, Tushar Debnath, Suman Neogy, Hirendra N. Ghosh, Manoj Kumar Saxena & Bhupendra Singh Tomar. (2017) Micellar extraction assisted fluorometric determination of ultratrace amount of uranium in aqueous samples by novel diglycolamide-capped quantum dot nanosensor. Sensors and Actuators B: Chemical 253, pages 592-602.
Crossref
Pallavi Singhal, Sanjay K. Jha, Bal Govind Vats & Hirendra N. Ghosh. (2017) Electron-Transfer-Mediated Uranium Detection Using Quasi-Type II Core–Shell Quantum Dots: Insight into Mechanistic Pathways. Langmuir 33:33, pages 8114-8122.
Crossref
Jiaolai Jiang, Lingwei Ma, Jun Chen, Pengcheng Zhang, Haoxi Wu, Zhengjun Zhang, Shaofei Wang, Wen Yun, Yingru Li, Jianping Jia & Junsheng Liao. (2017) SERS detection and characterization of uranyl ion sorption on  silver nanorods wrapped with Al2O3 layers. Microchimica Acta 184:8, pages 2775-2782.
Crossref
Junwei Ye, Raji F. Bogale, Yangwei Shi, Yanzhen Chen, Xigang Liu, Siqi Zhang, Yaoyao Yang, Jianzhang Zhao & Guiling Ning. (2017) A Water‐Stable Dual‐Channel Luminescence Sensor for UO 2 2+ Ions Based on an Anionic Terbium(III) Metal–Organic Framework . Chemistry – A European Journal 23:32, pages 7657-7662.
Crossref
Jiaqi Ma, Weiwei He, Xiaoli Han & Daoben Hua. (2017) Amidoximated fluorescent polymer based sensor for detection of trace uranyl ion in aqueous solution. Talanta 168, pages 10-15.
Crossref
Wei Liu, Xing Dai, Zhuanling Bai, Yanlong Wang, Zaixing Yang, Linjuan Zhang, Lin Xu, Lanhua Chen, Yuxiang Li, Daxiang Gui, Juan Diwu, Jianqiang Wang, Ruhong Zhou, Zhifang Chai & Shuao Wang. (2017) Highly Sensitive and Selective Uranium Detection in Natural Water Systems Using a Luminescent Mesoporous Metal–Organic Framework Equipped with Abundant Lewis Basic Sites: A Combined Batch, X-ray Absorption Spectroscopy, and First Principles Simulation Investigation. Environmental Science & Technology 51:7, pages 3911-3921.
Crossref
R.K. Dutta & Ambika Kumar. (2016) Highly Sensitive and Selective Method for Detecting Ultratrace Levels of Aqueous Uranyl Ions by Strongly Photoluminescent-Responsive Amine-Modified Cadmium Sulfide Quantum Dots. Analytical Chemistry 88:18, pages 9071-9078.
Crossref
Sai Jin Xiao, Jun Zuo, Zhi Qiang Zhu, Yong Zhong Ouyang, Xing Lei Zhang, Huan Wen Chen & Li Zhang. (2015) Highly sensitive DNAzyme sensor for selective detection of trace uranium in ore and natural water samples. Sensors and Actuators B: Chemical 210, pages 656-660.
Crossref
Dingyuan Zhang, Zhuo Chen, Haneen Omar, Lin Deng & Niveen M. Khashab. (2015) Colorimetric Peroxidase Mimetic Assay for Uranyl Detection in Sea Water. ACS Applied Materials & Interfaces 7:8, pages 4589-4594.
Crossref
Mohammad Behbahani, Sara Salimi, Hamid Sadeghi Abandansari, Fariborz Omidi, Mani Salarian & Ali Esrafili. (2015) Application of a tailor-made polymer as a selective and sensitive colorimetric sensor for reliable detection of trace levels of uranyl ions in complex matrices. RSC Advances 5:74, pages 59912-59920.
Crossref
Xiaowen Shu, Yingjie Wang, Shuang Zhang, Li Huang, Shuao Wang & Daoben Hua. (2015) Determination of trace uranyl ion by thermoresponsive porphyrin–terminated polymeric sensor. Talanta 131, pages 198-204.
Crossref
Reza Ansari & Zahra Mosayebzadeh. (2013) Construction of a new solid-state U(VI) ion-selective electrode based on polypyrrole conducting polymer. Journal of Radioanalytical and Nuclear Chemistry 299:3, pages 1597-1605.
Crossref
Qiong Tang, Yali Yuan, Xilin Xiao, Ping Guo, Jianbang Hu, Dandan Ma & Yangyang Gao. (2013) DNAzyme based electrochemical sensors for trace uranium. Microchimica Acta 180:11-12, pages 1059-1064.
Crossref
Yaxing Yang, Saijin Xiao, Ye Zhang, Longzhu Huang & Qingcheng Liu. (2013) In situ detection of trace aerosol uranium using a handheld photometer and solid reagent kit. Analytical Methods 5:18, pages 4785.
Crossref
Zhiliang Jiang, Yi Zhang, Aihui Liang, Chunqiang Chen, Jiannian Tian & Tingsheng Li. (2011) Free-Labeled Nanogold Catalytic Detection of Trace UO 2 2+ Based on the Aptamer Reaction and Gold Particle Resonance Scattering Effect. Plasmonics 7:2, pages 185-190.
Crossref
Yanghe Luo, Yi Zhang, Lili Xu, Lisheng Wang, Guiqing Wen, Aihui Liang & Zhiliang Jiang. (2012) Colorimetric sensing of trace UO22+ by using nanogold-seeded nucleation amplification and label-free DNAzyme cleavage reaction. The Analyst 137:8, pages 1866.
Crossref
Jung Heon Lee, Zidong Wang, Juewen Liu & Yi Lu. (2008) Highly Sensitive and Selective Colorimetric Sensors for Uranyl (UO 2 2+ ): Development and Comparison of Labeled and Label-Free DNAzyme-Gold Nanoparticle Systems . Journal of the American Chemical Society 130:43, pages 14217-14226.
Crossref
Juewen LiuAndrea K. BrownXiangli MengDonald M. CropekJonathan D. Istok, David B. Watson & Yi Lu. (2007) A catalytic beacon sensor for uranium with parts-per-trillion sensitivity and millionfold selectivity. Proceedings of the National Academy of Sciences 104:7, pages 2056-2061.
Crossref
Bernhard Welz & Michael Sperling. 1998. Atomic Absorption Spectrometry. Atomic Absorption Spectrometry 771 905 .
. 1996. Spectrochemical Trace Analysis for Metals and Metalloids. Spectrochemical Trace Analysis for Metals and Metalloids 765 775 .
Neena Nashine & Rajendra Kumar Mishra. (1995) Spectrophotometric determination of uranium( IV ) with thorin and N-hydroxy-N,N′-diphenylbenzamidine . The Analyst 120:1, pages 197-199.
Crossref
Nitin Gumber, Rajesh Pai, Kaushik Sanyal, Bijaideep Dutta & Hassan P A. (2022) One Pot Hydrothermal Synthesis of Ceo2@Uio-66 (CE) and It's Uranium Adsorption Studies from Aqueous Solution. SSRN Electronic Journal.
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.