Borane is Lewis acid because it have vacant orbital. and borane is highly reactive chemical and caught fire in the air and easily react with water. So a Lewis base THF is used as solvent.
Borane is Lewis acid because it have vacant orbital. and borane is highly reactive chemical and caught fire in the air and easily react with water. So a Lewis base THF is used as solvent.
Borane is extremely reactive due to its Lewis acidic nature. This means that it can readily accept electrons from other molecules, which makes it highly prone to reactions. Additionally, borane is a highly unstable molecule, which also contributes to its reactivity. You can go through the article to know more about boranes and its properties.
Borane is extremely reactive due to its Lewis acidic nature. This means that it can readily accept electrons from other molecules, which makes it highly prone to reactions. Additionally, borane is a highly unstable molecule, which also contributes to its reactivity. You can go through the article to know more about boranes and its properties.
If you are referring to N2, it is not very reactive at all. The strong triple bond between nitrogen atoms limits its reactivity. Though nitrogen is the chief component of the atmosphere, when most substances burn, they combine with the more reactive O2 and not the more abundant N2. Yes, there are some very reactive elements such as Mg that burn in air to produce both MgO and Mg3N2, but even the highly reactive F2 does not react easily with N2.
If you are referring to N2, it is not very reactive at all. The strong triple bond between nitrogen atoms limits its reactivity. Though nitrogen is the chief component of the atmosphere, when most substances burn, they combine with the more reactive O2 and not the more abundant N2. Yes, there are some very reactive elements such as Mg that burn in air to produce both MgO and Mg3N2, but even the highly reactive F2 does not react easily with N2.
it is because. Interhalogen compounds are more reactive than halogens because the A-X bond in interhalogens is weaker than X-X bond in halogens. But in case of Flourine, the F-F bond is weaker. This is because of the small size of fluorine atoms, the F-F bond distance is very small due to which there is appreciable inter-electronic repulsion.This repulsion weakens the bond between two fluorine atoms. Hence, F2 is more reactive than ClF3 but ClF3 is more reactive than Chlorine
it is because. Interhalogen compounds are more reactive than halogens because the A-X bond in interhalogens is weaker than X-X bond in halogens. But in case of Flourine, the F-F bond is weaker. This is because of the small size of fluorine atoms, the F-F bond distance is very small due to which there is appreciable inter-electronic repulsion.This repulsion weakens the bond between two fluorine atoms. Hence, F2 is more reactive than ClF3 but ClF3 is more reactive than Chlorine
I mean... look at the thing
I mean... look at the thing
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Borane is Lewis acid because it have vacant orbital. and borane is highly reactive chemical and caught fire in the air and easily react with water. So a Lewis base THF is used as solvent.
Borane is Lewis acid because it have vacant orbital. and borane is highly reactive chemical and caught fire in the air and easily react with water. So a Lewis base THF is used as solvent.
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Borane is extremely reactive due to its Lewis acidic nature. This means that it can readily accept electrons from other molecules, which makes it highly prone to reactions. Additionally, borane is a highly unstable molecule, which also contributes to its reactivity. You can go through the article to know more about boranes and its properties.
Borane is extremely reactive due to its Lewis acidic nature. This means that it can readily accept electrons from other molecules, which makes it highly prone to reactions. Additionally, borane is a highly unstable molecule, which also contributes to its reactivity. You can go through the article to know more about boranes and its properties.
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If you are referring to N2, it is not very reactive at all. The strong triple bond between nitrogen atoms limits its reactivity. Though nitrogen is the chief component of the atmosphere, when most substances burn, they combine with the more reactive O2 and not the more abundant N2. Yes, there are some very reactive elements such as Mg that burn in air to produce both MgO and Mg3N2, but even the highly reactive F2 does not react easily with N2.
If you are referring to N2, it is not very reactive at all. The strong triple bond between nitrogen atoms limits its reactivity. Though nitrogen is the chief component of the atmosphere, when most substances burn, they combine with the more reactive O2 and not the more abundant N2. Yes, there are some very reactive elements such as Mg that burn in air to produce both MgO and Mg3N2, but even the highly reactive F2 does not react easily with N2.
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it is because. Interhalogen compounds are more reactive than halogens because the A-X bond in interhalogens is weaker than X-X bond in halogens. But in case of Flourine, the F-F bond is weaker. This is because of the small size of fluorine atoms, the F-F bond distance is very small due to which there is appreciable inter-electronic repulsion.This repulsion weakens the bond between two fluorine atoms. Hence, F2 is more reactive than ClF3 but ClF3 is more reactive than Chlorine
all the best
it is because. Interhalogen compounds are more reactive than halogens because the A-X bond in interhalogens is weaker than X-X bond in halogens. But in case of Flourine, the F-F bond is weaker. This is because of the small size of fluorine atoms, the F-F bond distance is very small due to which there is appreciable inter-electronic repulsion.This repulsion weakens the bond between two fluorine atoms. Hence, F2 is more reactive than ClF3 but ClF3 is more reactive than Chlorine
all the best
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