Hydrogen storage in metal–organic frameworks

MP Suh, HJ Park, TK Prasad, DW Lim - Chemical reviews, 2012 - ACS Publications
The decreasing fossil fuel supply and climate change caused by carbon dioxide emission
have spurred an initiative to develop alternative fuels. Hydrogen is one of the most …

Hydrogen storage in metal–organic frameworks

LJ Murray, M Dincă, JR Long - Chemical Society Reviews, 2009 - pubs.rsc.org
New materials capable of storing hydrogen at high gravimetric and volumetric densities are
required if hydrogen is to be widely employed as a clean alternative to hydrocarbon fuels in …

Recent progress in transition metal hexacyanometallates: From structure to properties and functionality

Y Avila, P Acevedo-Pena, L Reguera… - Coordination Chemistry …, 2022 - Elsevier
The coordination chemistry of transition metal hexacyanometallates is a field of continuous
advances and emerging applications. In the last three decades, relevant progress has been …

[图书][B] The physical chemistry of materials: energy and environmental applications

R Roque-Malherbe - 2016 - taylorfrancis.com
In recent years, the area dealing with the physical chemistry of materials has become an
emerging discipline in materials science that emphasizes the study of materials for chemical …

Synthesis and characterization of ruthenium and iron− ruthenium Prussian blue analogues

JN Behera, DM D'Alessandro, N Soheilnia… - Chemistry of …, 2009 - ACS Publications
The electronic spectra, electrical conductivity, magnetism, and gas adsorption properties of
the newly prepared Prussian blue analogues Fe4 [Ru (CN) 6] 3· 18H2O (2) and K1. 2Ru3. 6 …

Enhanced hydrogen adsorption in alkali metal based copper hexacyanoferrate Prussian blue analogue nanocubes

P Bhatt, S Banerjee, MD Mukadam, P Jha… - Journal of Power …, 2022 - Elsevier
Abstract Two Prussian blue analogues (PBAs) Cu II [Fe III (CN) 6)] 2/3· 15H 2 O (1), and KI
Cu II [Fe II (CN) 6)] 3/4· 9H 2 O (2) are synthesised using a co-precipitation method at room …

Structure of Porous Copper Prussian Blue Analogues: Nature of Their High H2 Storage Capacity

J Jiménez-Gallegos… - The Journal of …, 2010 - ACS Publications
Within porous Prussian blue to copper the highest H2 storage capacity is observed. Such
behavior finds explanation in the crystal structure for Cu3 [M (CN) 6] 2 with M= Fe, Co, Ir. The …

Hydrogen Storage in Prussian Blue Analogues: H2 Interaction with the Metal Found at the Cavity Surface

CP Krap, J Balmaseda, LF Del Castillo, B Zamora… - Energy & …, 2010 - ACS Publications
In open framework Prussian blue analogues, all of the metal atoms linked at the N end of the
CN groups are found at the surface of the cavities with an unsaturated coordination …

Materials for aqueous sodium-ion batteries: cation mobility in a zinc hexacyanoferrate electrode

MA Oliver-Tolentino, J Vazquez-Samperio… - RSC …, 2016 - pubs.rsc.org
The coordination polymer Zn3Na2 [FeII (CN) 6] 2 has an open porous framework that is
stable in acidic and neutral aqueous solutions and appears to be an attractive solid for …

Charge redistribution effects in hexacyanometallates evaluated from XPS data

A Cano, L Reguera, M Avila… - European Journal of …, 2020 - Wiley Online Library
The charge redistribution effects determine the physical and functional properties of
transition metal hexacyanometallates. The π‐back bonding interaction between the CN …