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Manganese-cobalt hexacyanoferrate cathodes for sodium-ion batteries
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JOURNAL OF MATERIALS CHEMISTRY A (2016)
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JOURNAL OF MATERIALS CHEMISTRY A (2016)
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Perfluoropentane-Encapsulated Hollow Mesoporous Prussian Blue Nanocubes for Activated Ultrasound Imaging and Photothermal Therapy of Cancer
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ACS APPLIED MATERIALS & INTERFACES (2015)
One-pot in situ redox synthesis of hexacyanoferrate/conductive polymer hybrids as lithium-ion battery cathodes
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ELECTROCHIMICA ACTA (2015)
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JOURNAL OF THE AMERICAN CHEMICAL SOCIETY (2015)
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JOURNAL OF THE AMERICAN CHEMICAL SOCIETY (2015)
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Low-defect Prussian blue nanocubes as high capacity and long life cathodes for aqueous Na-ion batteries
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Towards High-Voltage Aqueous Metal-Ion Batteries Beyond 1.5 V: The Zinc/Zinc Hexacyanoferrate System
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High-quality Prussian blue crystals as superior cathode materials for room-temperature sodium-ion batteries
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ENERGY & ENVIRONMENTAL SCIENCE (2014)
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A bi-functional device for self-powered electrochromic window and self-rechargeable transparent battery applications
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NATURE COMMUNICATIONS (2014)
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NATURE COMMUNICATIONS (2014)
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ANGEWANDTE CHEMIE-INTERNATIONAL EDITION (2013)
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JOURNAL OF HAZARDOUS MATERIALS (2013)
Prussian blue-coated magnetic nanoparticles for removal of cesium from contaminated environment
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JOURNAL OF NANOPARTICLE RESEARCH (2013)
Suppressed Activation Energy for Interfacial Charge Transfer of a Prussian Blue Analog Thin Film Electrode with Hydrated Ions (Li+, Na+, and Mg2+)
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JOURNAL OF PHYSICAL CHEMISTRY C (2013)
Single-crystal FeFe(CN)(6) nanoparticles: a high capacity and high rate cathode for Na-ion batteries
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JOURNAL OF MATERIALS CHEMISTRY A (2013)
Prussian blue: a new framework of electrode materials for sodium batteries
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CHEMICAL COMMUNICATIONS (2012)
Non-Prussian Blue Structures and Magnetic Ordering of Na2MnII[MnII(CN)6] and Na2MnII[MnII(CN)6]•2H2O
Christopher M. Kareis et al.
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY (2012)
Electrochromic cell with UV-curable electrolyte polymer for cohesion and strength
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SOLAR ENERGY MATERIALS AND SOLAR CELLS (2012)
Electrochromic devices based on in situ polymerised EDOT and Prussian Blue: influence of transparent conducting oxide and electrolyte composition-towards up-scaling
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NEW JOURNAL OF CHEMISTRY (2011)
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NATURE COMMUNICATIONS (2011)
A Dual Electrochrome of Poly-(3,4-Ethylenedioxythiophene) Doped by N,N '-Bis(3-sulfonatopropyl)-4-4 '-bipyridinium-Redox Chemistry and Electrochromism in Flexible Devices
Shweta Bhandari et al.
CHEMSUSCHEM (2010)
Electrochemistry of poly(3,4-ethylenedioxythiophene)-polyaniline/Prussian blue electrochromic devices containing an ionic liquid based gel electrolyte film
Melepurath Deepa et al.
PHYSICAL CHEMISTRY CHEMICAL PHYSICS (2009)
Electrochromic performance of a poly(3,4-ethylenedioxythiophene) - Prussian blue device encompassing a free standing proton electrolyte film
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ELECTROCHIMICA ACTA (2008)
Hydrogen storage in copper Prussian blue analogues:: Evidence of H2 coordination to the copper atom
L. Reguera et al.
JOURNAL OF PHYSICAL CHEMISTRY C (2008)
Cycling and at-rest stabilities of a complementary electrochromic device containing poly(3,4ethylenedioxythiophene) and Prussian blue
TS Tung et al.
SOLAR ENERGY MATERIALS AND SOLAR CELLS (2006)
Sensor and biosensor preparation, optimisation and applications of Prussian Blue modified electrodes
F Ricci et al.
BIOSENSORS & BIOELECTRONICS (2005)
High-contrast electrochromism and controllable dissolution of assembled Prussian blue/polymer nanocomposites
DM DeLongchamp et al.
ADVANCED FUNCTIONAL MATERIALS (2004)
Amperometric biosensor for glutamate using Prussian Blue-based artificial peroxldase as a transducer for hydrogen peroxide
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ANALYTICAL CHEMISTRY (2000)