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Original Articles

AMINOPHOSPHONIC DERIVATIVES OF CHROMONE. SYNTHESIS OF NOVEL CHROMONE-3-(α-AMINO) METHANEPHOSPHONIC ACIDS

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Pages 179-189 | Received 20 Oct 1998, Published online: 04 Oct 2006

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A.D. Shinde, S.S. Sonar, B.B. Shingate & M.S. Shingare. (2010) Synthesis and Biological Screening of Novel Thiadiazoles, Selenadiazoles, and Spirocyclic Benzopyran by Ultrasonic and Microwave Irradiation. Phosphorus, Sulfur, and Silicon and the Related Elements 185:8, pages 1594-1603.
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GeorgiyO. Kachkovskyi & OlegI. Kolodiazhnyi. (2009) Synthesis of Phosphonic Acids Possessing Isoindolin-1-one Moiety: Unexpected Acid-Catalyzed C-P-Bond Cleavage. Phosphorus, Sulfur, and Silicon and the Related Elements 184:4, pages 890-907.
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Elżbieta Budzisz. (2004) SYNTHESIS, REACTIONS AND BIOLOGICAL ACTIVITY OF PHOSPHORUS-CONTAINING DERIVATIVES OF CHROMONE AND COUMARIN. Phosphorus, Sulfur, and Silicon and the Related Elements 179:10, pages 2131-2147.
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Bogdan Boduszek & Michal Uher. (2000) Synthesis of Novel Pyrone, Chromone and Coumarin Derivatives of Aminomethanephosphonic Acid. Synthetic Communications 30:10, pages 1749-1754.
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Bogdan Boduszek, Rafał Latajka & Wojciech Leśniak. (2000) Acid-Catalyzed Cleavage Of 2-Pyridyl and 4-Pyridyl Derivatives Of Aminomethylphosphonic Acid. Kinetic And Chemical Arguments For A Mechanism With A-SE2 Character. Phosphorus, Sulfur, and Silicon and the Related Elements 165:1, pages 53-75.
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Articles from other publishers (15)

Nóra Popovics-Tóth, Trinh Dang Tran Bao, Ádám Tajti, Béla Mátravölgyi, Zsolt Kelemen, Franc Perdih, László HacklerJrJr, László G. Puskás & Erika Bálint. (2022) Three-Component Reaction of 3-Formyl-6-Methylchromone, Primary Amines, and Secondary Phosphine Oxides: A Synthetic and Mechanistic Study. ACS Omega 8:2, pages 2698-2711.
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Tarik E. Ali, Mohammed A. Assiri, Somaia M. Abdel-Kariem & Ibrahim S. Yahia. (2021) Synthetic Methods for Phosphorus Compounds Containing Chromone and Thiochromone Rings. HETEROCYCLES 102:4, pages 583.
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M. Kumar. 2014. Chemical Shifts and Coupling Constants for Phosphorus-31. Chemical Shifts and Coupling Constants for Phosphorus-31 1921 1921 .
M. Kumar. 2014. Chemical Shifts and Coupling Constants for Phosphorus-31. Chemical Shifts and Coupling Constants for Phosphorus-31 1680 1680 .
M. Kumar. 2014. Chemical Shifts and Coupling Constants for Phosphorus-31. Chemical Shifts and Coupling Constants for Phosphorus-31 1674 1674 .
M. Kumar. 2014. Chemical Shifts and Coupling Constants for Phosphorus-31. Chemical Shifts and Coupling Constants for Phosphorus-31 1672 1672 .
M. Kumar. 2014. Chemical Shifts and Coupling Constants for Phosphorus-31. Chemical Shifts and Coupling Constants for Phosphorus-31 807 807 .
M. Kumar. 2014. Chemical Shifts and Coupling Constants for Phosphorus-31. Chemical Shifts and Coupling Constants for Phosphorus-31 649 649 .
M. Kumar. 2014. Chemical Shifts and Coupling Constants for Phosphorus-31. Chemical Shifts and Coupling Constants for Phosphorus-31 644 644 .
M. Kumar. 2013. Chemical Shifts and Coupling Constants for Phosphorus-31. Chemical Shifts and Coupling Constants for Phosphorus-31 1633 1633 .
M. Kumar. 2013. Chemical Shifts and Coupling Constants for Phosphorus-31. Chemical Shifts and Coupling Constants for Phosphorus-31 1278 1278 .
M. Kumar. 2013. Chemical Shifts and Coupling Constants for Phosphorus-31. Chemical Shifts and Coupling Constants for Phosphorus-31 1261 1261 .
M. Kumar. 2013. Chemical Shifts and Coupling Constants for Phosphorus-31. Chemical Shifts and Coupling Constants for Phosphorus-31 1255 1255 .
Tarik E. Ali & Silvia S. Halacheva. (2009) Synthetic approach for novel bis(α‐aminophosphonic acid) derivatives of chromone containing 1,2,4,3‐triazaphosphole moieties. Heteroatom Chemistry 20:3, pages 117-122.
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Chandra Kanta Ghosh. (2009) 2‐Methyl‐4‐oxo‐4 H ‐1‐benzopyran‐4‐one as a synthon in heterocyclic chemistry . Journal of Heterocyclic Chemistry 43:4, pages 813-820.
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