Using first principles calculations, we show that the storage capacity as well as desorption temperature of MOFs can be significantly enhanced by decorating pyridine (a common linker in MOFs) by metal atoms. The storage capacity of metal-pyridine complexes are found to be dependent on the type of decorating metal atom. Among the 3d transition metal atoms, Sc turns out to be the most efficient storing unto four H-2 molecules. Most importantly, Sc does not suffer dimerisation on the surface of pyridine, keeping the storage capacity of every metal atom intact. Based on these findings, we propose a metal-decorated pyridine-based MOFs, which has potential to meet the required H-2 storage capacity for vehicular usage. Copyright (C) 2014, Hydrogen...
Because of their high surface areas, crystallinity, and tunable properties, metal–organic frameworks...
Conventional storage of large amounts of hydrogen in its molecular form is difficult and expensive b...
Hydrogen is a versatile, clean, and efficient energy carrier considered as an ideal substitute for a...
Using first principles calculations, we show that the storage capacity as well as desorption tempera...
Metallacarboranes are promising towards realizing room temperature hydrogen storage media because of...
Metal organic frameworks (MOFs) have received significant attention in recent years both from academ...
Conventional storage of large amounts of hydrogen in its molecular form is difficult and expensive b...
Metal organic frameworks (MOFs) have received significant attention in recent years both from academ...
We present the in silico design of a MOF-74 analogue, hereon known as M2(DHFUMA) [M = Mg, Fe, Co, Ni...
We present the in silico design of a MOF-74 analogue, hereon known as M2(DHFUMA) [M = Mg, Fe, Co, Ni...
Metal-organic frameworks (MOFs) are highly attractive materials because of their ultra-high surface ...
A new metal-organic framework (MOF) has been designed based on a carboxy functionalized corrole liga...
Stimulated by the recent report by Yaghi and co-workers of hexagonal metal−organic frameworks (MOF) ...
Microporous metal–organic frameworks are a class of materials being vigorously investigated for mobi...
Using first principles calculations, we show the high hydrogen storage capacity of metallacarboranes...
Because of their high surface areas, crystallinity, and tunable properties, metal–organic frameworks...
Conventional storage of large amounts of hydrogen in its molecular form is difficult and expensive b...
Hydrogen is a versatile, clean, and efficient energy carrier considered as an ideal substitute for a...
Using first principles calculations, we show that the storage capacity as well as desorption tempera...
Metallacarboranes are promising towards realizing room temperature hydrogen storage media because of...
Metal organic frameworks (MOFs) have received significant attention in recent years both from academ...
Conventional storage of large amounts of hydrogen in its molecular form is difficult and expensive b...
Metal organic frameworks (MOFs) have received significant attention in recent years both from academ...
We present the in silico design of a MOF-74 analogue, hereon known as M2(DHFUMA) [M = Mg, Fe, Co, Ni...
We present the in silico design of a MOF-74 analogue, hereon known as M2(DHFUMA) [M = Mg, Fe, Co, Ni...
Metal-organic frameworks (MOFs) are highly attractive materials because of their ultra-high surface ...
A new metal-organic framework (MOF) has been designed based on a carboxy functionalized corrole liga...
Stimulated by the recent report by Yaghi and co-workers of hexagonal metal−organic frameworks (MOF) ...
Microporous metal–organic frameworks are a class of materials being vigorously investigated for mobi...
Using first principles calculations, we show the high hydrogen storage capacity of metallacarboranes...
Because of their high surface areas, crystallinity, and tunable properties, metal–organic frameworks...
Conventional storage of large amounts of hydrogen in its molecular form is difficult and expensive b...
Hydrogen is a versatile, clean, and efficient energy carrier considered as an ideal substitute for a...