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A new approach to the synthesis of asymmetric heavy multiple bonds
A synthetic and computational investigation into the reactivity of silylenes towards small molecule activation and heavy element multiple bonds
Development of an atom economical method for phosphenium cation synthesis
Functionalization of carbon dioxide through the use of amino phosphonates
N,C-bound phosphenium cations
N,C-bound phosphenium cations as main group hydrogenation catalysts
N,N-bound phosphenium cations: synthesis and reactivity with carbon dioxide and oxidizing reagents
Novel phosphinoamines for carbon dioxide capture
Preparation of amino phosphonates for carbon dioxide capture and functionalization
Preparation of amino phosphonates for carbon dioxide sequestering
Synthesis and optimization of bulky tetraarylstannane as precursors for diarylstannylenes for hydrogen Activation
Synthesis of asymmetric main group multiple bonds with phosphenium cation precursors and group 14 carbenoids
Synthesis of asymmetric multiple bonds between heavy main group elements
The synthesis of N,C-Bound phosphenium cations and reactivity studies with hydrogen, ammonia and carbon dioxide
The synthesis of novel Stannylenes and testing their reactivity towards forming heavy element multiple bonds
Towards the synthesis of heavy main group compounds with asymmetric double bonds