We found that nitrogen and hydrogen directly react at room temperature and pressures of similar to 35 GPa forming chains of single-bonded nitrogen atom with the rest of the bonds terminated with hydrogen atoms - as identified by IR absorption, Raman, X-ray diffraction experiments and theoretical calculations. At releasing pressures below similar to 10 GPa, the product transforms into hydrazine. Our findings might open a way for the practical synthesis of these extremely high energetic materials as the formation of nitrogen-hydrogen compounds is favorable already at pressures above 2 GPa according to the calculations
This thesis project has focussed on the experimental study of simple molecular systems at extreme c...
Polymeric nitrogen, stabilized by compressing pure molecular nitrogen, has yet to be recovered to am...
The goal of this work was to demonstrate proof-of-principle existence of a new class of high energy ...
We found that nitrogen and hydrogen directly react at room temperature and pressures of similar to 3...
International audienceNew topochemistry in simple molecular systems can be explored at high pressure...
International audienceNew topochemistry in simple molecular systems can be explored at high pressure...
International audienceNew topochemistry in simple molecular systems can be explored at high pressure...
Optical and synchrotron x-ray diffraction diamond anvil cell experiments have been combined with fir...
Optical and synchrotron x-ray diffraction diamond anvil cell experiments have been combined with fir...
Through a series of Raman spectroscopy studies, we investigate the behavior of hydrogen-helium and h...
Through a series of Raman spectroscopy studies, we investigate the behavior of hydrogen-helium and h...
The purpose of our program is to explore fundamental chemistry relevant to the discovery of energy e...
Under pressure small molecular systems exhibit a remarkable degree of polymorphism and unexpected b...
International audienceAlthough NH 3 molecules interacting with ground state nitrogen atoms N(4 S) se...
International audienceAlthough NH 3 molecules interacting with ground state nitrogen atoms N(4 S) se...
This thesis project has focussed on the experimental study of simple molecular systems at extreme c...
Polymeric nitrogen, stabilized by compressing pure molecular nitrogen, has yet to be recovered to am...
The goal of this work was to demonstrate proof-of-principle existence of a new class of high energy ...
We found that nitrogen and hydrogen directly react at room temperature and pressures of similar to 3...
International audienceNew topochemistry in simple molecular systems can be explored at high pressure...
International audienceNew topochemistry in simple molecular systems can be explored at high pressure...
International audienceNew topochemistry in simple molecular systems can be explored at high pressure...
Optical and synchrotron x-ray diffraction diamond anvil cell experiments have been combined with fir...
Optical and synchrotron x-ray diffraction diamond anvil cell experiments have been combined with fir...
Through a series of Raman spectroscopy studies, we investigate the behavior of hydrogen-helium and h...
Through a series of Raman spectroscopy studies, we investigate the behavior of hydrogen-helium and h...
The purpose of our program is to explore fundamental chemistry relevant to the discovery of energy e...
Under pressure small molecular systems exhibit a remarkable degree of polymorphism and unexpected b...
International audienceAlthough NH 3 molecules interacting with ground state nitrogen atoms N(4 S) se...
International audienceAlthough NH 3 molecules interacting with ground state nitrogen atoms N(4 S) se...
This thesis project has focussed on the experimental study of simple molecular systems at extreme c...
Polymeric nitrogen, stabilized by compressing pure molecular nitrogen, has yet to be recovered to am...
The goal of this work was to demonstrate proof-of-principle existence of a new class of high energy ...