Synthesis and Catalysis: Open Access : Citations & Metrics Report

Articles published in Synthesis and Catalysis: Open Access have been cited by esteemed scholars and scientists all around the world. Synthesis and Catalysis: Open Access has got h-index 5, which means every article in Synthesis and Catalysis: Open Access has got 5 average citations.

Following are the list of articles that have cited the articles published in Synthesis and Catalysis: Open Access.

  2023 2022 2021 2020 2019

Year wise published articles

0 11 20 3 4

Year wise citations received

1 6 5 3 4
Journal total citations count 94
Journal impact factor 3.82
Journal 5 years impact factor 3.95
Journal cite score 4.39
Journal h-index 5
Journal h-index since 2017 5
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Jeya Ranchani AA, Parthasarathy V, Hu C, Lin YF, Tung KL, Anbarasan R. Structural modification of aminoclay for catalytic applications. Chemical Engineering Communications. 2019 Jun 20:1-6.

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Sales RN. Aplicabilidade de nanoestruturas híbridas de titanatos em reações catalíticas de elevado interesse industrial (Doctoral dissertation).

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Таратайко АВ. Разработка каталитических материалов на основе гибрида Pluronic P123@ SBA-15: выпускная бакалаврская работа по направлению подготовки: 04.03. 01-Химия.

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Du F, Zeng Q, Lai Z, Cheng Z, Ruan G. Silicon doped graphene quantum dots combined with ruthenium (iii) ions as a fluorescent probe for turn-on detection of triclosan. New Journal of Chemistry. 2019;43(33):12907-15.

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Liu Z, Mo Z, Liu N, Guo R, Niu X, Zhao P, Yang X. One-pot synthesis of highly fluorescent boron and nitrogen co-doped graphene quantum dots for the highly sensitive and selective detection of mercury ions in aqueous media. Journal of Photochemistry and Photobiology A: Chemistry. 2019 Nov 19:112255.

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Du F, Cheng Z, Lai Z, Ruan G, Zhao C. Red-emissive nitrogen doped carbon quantum dots for highly selective and sensitive fluorescent detection of alachlor herbicide in soil samples. New Journal of Chemistry. 2019.

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Sheng L, Huangfu B, Xu Q, Tian W, Li Z, Meng A, Tan S. A highly selective and sensitive fluorescent probe for detecting Cr (VI) and cell imaging based on nitrogen-doped graphene quantum dots. Journal of Alloys and Compounds. 2019 Nov 27:153191.

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Zhao L, Zhang Z, Liu Y, Wei J, Liu Q, Ran P, Li X. Fibrous strips decorated with cleavable aggregation-induced emission probes for visual detection of Hg2+. Journal of hazardous materials. 2019 Nov 1:121556.

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Zheng X, Fan R, Xing K, Zhu K, Wang P, Yang Y. Smart cationic coordination polymer: A single-crystal-to-single-crystal approach for simultaneous detection and removal of perchlorate in aqueous media. Chemical Engineering Journal. 2020 Jan 15;380:122580.

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Huo F, Kang Z, Zhu M, Tan C, Tang Y, Liu Y, Zhang W. Metal-triggered fluorescence enhancement of multicolor carbon dots in sensing and bioimaging. Optical Materials. 2019 Aug 1;94:363-70.

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Yang X, Zhang M, Zhang Y, Wang N, Bian W, Choi MM. Nitrogen and phosphorus co-doped carbon dots as a “turn-off-on” fluorescence probe for the detection of Hg 2+ and GSH and cell imaging. Analytical Methods. 2019.

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Xue S, Wang P, Chen K. A novel fluorescent chemosensor for detection of mercury (II) ions based on dansyl-peptide and its application in real water samples and living LNcap cells. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy. 2020 Feb 5;226:117616.

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Li D, Yang F, Li X, Yuan R, Xiang Y. Target-mediated base-mismatch initiation of non-enzymatic signal amplification network for highly sensitive sensing of Hg2+. Analyst. 2019.

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Tang M, Liu X, Zhang N, Pang J, Zou Y, Chai F, Wu H, Chen L. Synthesis of nitrogen and sulfur codoped carbon dots and application for fluorescence detection of Cd (II) in real water samples. Analytical Methods. 2019;11(40):5214-21.

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Ruksiriwanich W, Khantham C, Linsaenkart P, Jantrawut P, Rajchasom S. Optimization of Placenta Extraction for Wound Healing Activity. CHIANG MAI JOURNAL OF SCIENCE. 2019 Sep 1;46(5):946-59.

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Paun C, Lewin E, Sá J. Continuous-Flow Hydrogenation of D-Xylose with Bimetallic Ruthenium Catalysts on Micrometric Alumina. Synthesis and Catalysis: Open Access. 2017;2(1).

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Singh, R. (2020). Applications of Ionic Liquids in Organic Synthesis. In Applications of Nanotechnology for Green Synthesis (pp. 41-62). Springer, Cham.

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Poonam, G., & Singh, R. (2020). Applications of Ionic Liquids in Organic Synthesis. Applications of Nanotechnology for Green Synthesis, 41.

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