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Original Articles

Synthesis and NMR Spectroscopic Study of a New Bis(aminophosphonate) with Terminal Furyl Groups

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Pages 2915-2922 | Published online: 27 Oct 2010

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Zehuai Mou, Yinjun Wang & Xi Man. (2021) An efficient and green method to prepare bis-α-hydroxy phosphonates using triethylamine as catalyst. Phosphorus, Sulfur, and Silicon and the Related Elements 196:2, pages 195-199.
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I. Kraicheva, P. Finocchiaro & S. Failla. (2007) Synthesis and NMR Spectroscopic Study of New Furan-Derived Bis(Aminophosphonates). Phosphorus, Sulfur, and Silicon and the Related Elements 182:1, pages 57-64.
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Articles from other publishers (6)

Kolio D. Troev. 2018. Reactivity of P-H Group of Phosphorus Based Compounds. Reactivity of P-H Group of Phosphorus Based Compounds 291 409 .
M. Kumar. 2014. Chemical Shifts and Coupling Constants for Phosphorus-31. Chemical Shifts and Coupling Constants for Phosphorus-31 2271 2271 .
Emilia D. Naydenova, Petar T. Todorov & Kolio D. Troev. (2009) Recent synthesis of aminophosphonic acids as potential biological importance. Amino Acids 38:1, pages 23-30.
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E. Naydenova, K. Troev, M. Topashka-Ancheva, G. Hägele, I. Ivanov & A. Kril. (2006) Synthesis, cytotoxicity and clastogenicity of novel α-aminophosphonic acids. Amino Acids 33:4, pages 695-702.
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Emilia Naydenova, Margarita Topashka-Ancheva, Petar Todorov, Ts. Yordanova & Kolio Troev. (2006) Novel α-aminophosphonic acids. Design, characterization, and biological activity. Bioorganic & Medicinal Chemistry 14:7, pages 2190-2196.
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Kolio D. Troev. 2006. Chemistry and Application of H-Phosphonates. Chemistry and Application of H-Phosphonates 107 251 .

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