2012
DOI: 10.1039/c2ee22989g
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Metal organic frameworks for electrochemical applications

Abstract: Metal-organic frameworks (MOFs) have received huge attention in the last years as promising porous materials with unrivalled degree of tunability for a wide range of applications including gas storage or separation, catalysis, drug delivery and imaging. The present review appraises the application of MOFs in the field of electrochemistry. From materials for rechargeable batteries, supercapacitors and fuel cells to electrocatalysis or corrosion inhibition, MOFs or MOF-derived materials are gaining momentum in t… Show more

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Cited by 807 publications
(483 citation statements)
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References 158 publications
(286 reference statements)
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“…Znanych jest szereg metod (solvo/hydrotermalna, mikrofalowa, ultradźwiękowa, elektrochemiczna, mechanochemiczna) wykorzystywanych do syntezy materiałów metalo-organicznych typu MOF. Techniki te pozwalają na prowadzenie procesów w łagodnych warunkach oraz na zastosowanie niedrogich prekursorów [16].…”
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“…Znanych jest szereg metod (solvo/hydrotermalna, mikrofalowa, ultradźwiękowa, elektrochemiczna, mechanochemiczna) wykorzystywanych do syntezy materiałów metalo-organicznych typu MOF. Techniki te pozwalają na prowadzenie procesów w łagodnych warunkach oraz na zastosowanie niedrogich prekursorów [16].…”
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“…Wśród klas materiałów silnie porowatych struktury metalo-organiczne nie mają sobie równych pod wzglę-dem stopnia dostosowywania i różnorodności strukturalnej oraz chemicznej [13], a także w zakresie unikalnych właściwości uzyskiwanych w trakcie starannego doboru składników, które obejmują [13,14,16]:…”
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“…Discrete metallosupramolecular assemblies, e.g., metallamacrocycles, box and cage compounds, have been used, for example, as receptors and reaction containers [5][6][7][8][9][10]. Potential applications in catalysis, gas-storage, separation, sensing, magnetism, optics and electrochemistry have often been mentioned in connection with coordination polymers [11][12][13][14][15][16][17]. The directional-bonding approach to the synthesis of discrete metallosupramolecular compounds with well-defined shape exploits the combination of rigid, multibranched ligands (L) with highly directional coordinating groups and geometrically preconfigured metal ions (M) [18].…”
Section: Introduction and Scopementioning
confidence: 99%
“…Discrete metallosupramolecular assemblies have been prepared towards potential applications in catalysis, gas-storage, separation, sensing, magnetism, optics, and electrochemistry, among others [1][2][3][4][5][6]. The design of well-defined structures is based on the directional-bonding approach, using rigid ligands with highly directional coordinating groups and geometrically constrained metals entities.…”
Section: Introductionmentioning
confidence: 99%