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Tetrazolyl and tetrazolylidene complexes of gold: a synthetic and structural study. William F. Gabrielli, Stefan D. Nogai, Jean M. McKenzie, Stephanie Cronje, Helgard G. Raubenheimer
, New J. Chem.
, 2009
, 33
, 2208
- Mechanism of electrophilic substitution at a saturated carbon atom. Part XI. Bimolecular and unimolecular substitution of mercury for gold in alkylgold complexes. B. J. Gregory, C. K. Ingold
, J. Chem. Soc. B
, 1969
, 276
- Asymmetric gold catalysis enabled by specially designed ligands. Amol B. Gade, Urvashi, Nitin T. Patil
, Org. Chem. Front.
, 2024
, 11
, 1858
- Recent development of gold(i) and gold(iii) complexes as therapeutic agents for cancer diseases. Yunlong Lu, Xiaoyan Ma, Xingyu Chang, Zhenlin Liang, Lin Lv, Min Shan, Qiuyue Lu, Zhenfan Wen, Ronald Gust, Wukun Liu
, Chem. Soc. Rev.
, 2022
, 51
, 5518
- Bioinorganic and medicinal chemistry: aspects of gold(i)-protein complexes. Krishna P. Bhabak, Bhaskar J. Bhuyan, Govindasamy Mugesh
, Dalton Trans.
, 2011
, 40
, 2099
- Gold complexes as antimicrobial agents: an overview of different biological activities in relation to the oxidation state of the gold ion and the ligand structure. Biljana Đ. Glišić, Miloš I. Djuran
, Dalton Trans.
, 2014
, 43
, 5950
- Anatomy of gold catalysts: facts and myths. Beatrice Ranieri, Imma Escofet, Antonio M. Echavarren
, Org. Biomol. Chem.
, 2015
, 13
, 7103
- Dinuclear gold(i) complexes: from bonding to applications. Tahani A. C. A. Bayrakdar, Thomas Scattolin, Xinyuan Ma, Steven P. Nolan
, Chem. Soc. Rev.
, 2020
, 49
, 7044
- Intriguing mechanistic labyrinths in gold(i) catalysis. Carla Obradors, Antonio M. Echavarren
, Chem. Commun.
, 2014
, 50
, 16
- Going for gold – the chemistry of structurally authenticated gold(i)–ethylene complexes. Brandon T. Watson, H. V. Rasika Dias
, Chem. Commun.
, 2024