ABSTRACT:In spite of the significant progress in the design and modification of materials for...

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design and modification of materials for specific applications like hydrogen storage, there are still problems to achieve the desired levels of storage. Many MOFs have been designed and have also been synthesized but they are still not suitable enough or can meet the DOE standards due to moisture sensitive nature and the possibility of stability under other operating parameters

Transcript of ABSTRACT:In spite of the significant progress in the design and modification of materials for...

Page 1: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.

ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still problems to achieve the desired levels of storage. Many MOFs have been designed and have also been synthesized but they are still not suitable enough or can meet the DOE standards due to moisture sensitive nature and the possibility of stability under other operating parameters

Page 2: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.

Hydrogen as fuel

Lower heating value 33.3 kWh/g= 123 MJ/kg (11.1kWh/g gasoline)8 MJ/L where as for gasoline 32 MJ/L2017 DOE target 5.5wt% = 40g/L volumetric capacity

Page 3: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.

wide range of Hydrogen storage materials

metal hydridescomplex hydrideschemical hydrides

carbohydratesclathrates

inorganic nanotutes organic materisls

MOFscarbon materials

Liquid density 70.8 kg/m3 at NTP

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Physisorption methodson board reversible hydrides

(interstitial, covalent metal hydrides, amides and borohydrides

off board regenerable hydrides( hydrocarbons, ammonia borane,

alane)

Page 5: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.

The highest 99.5 mg/g at 56 bar and 77 K

164 mg/g at 77K 70 bar (176mg /g highest reported so far)

symbolic many metal framework of Zn(II), Cu(II) Mn(III),

Cr(III),La(III)

Page 6: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.

Design and synthesis of metal organic frameworks for hydrogen storage

In high boiling solvents like DMF, DEF (80-1300 C)solvo-thermal,

solubility solvent-ligand exchange kinetics,

rate of crystallizationcarboxylic acids, hetero-cycles containing

nitrogen

Page 7: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 8: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 9: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 10: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 11: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 12: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 13: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 14: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 15: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 16: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 17: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 18: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 19: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 20: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 21: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 22: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 23: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 24: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 25: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 26: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 27: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 28: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 29: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 30: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 31: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
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Page 34: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 35: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 36: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 37: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 38: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 39: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 40: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 41: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 42: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 43: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 44: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 45: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 46: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
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Page 50: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 51: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
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Page 53: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 54: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 55: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 56: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 57: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 58: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
Page 59: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.
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Where are we now?To meet DOE standards still a long way to goNew MOF with large surface area, pore volume, open metal sites, embedded metal catalysts facilitating hydrogen spill over have to be designed.

Page 63: ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still.

ABSTRACT:In spite of the significant progress in the design and modification of materials for specific applications like hydrogen storage, there are still problems to achieve the desired levels of storage. Many MOFs have been designed and have also been synthesized but they are still not suitable enough or can meet the DOE standards due to moisture sensitive nature and the possibility of stability under other operating parameters