Results 71 to 80 of about 23,234 (303)
Prussian Blue Analogs as Battery Materials [PDF]
Summary Prussian blue analogs have significant promise as active materials for the next generation of battery electrodes with improved cycle life and rate capability. Their useful electrochemical properties include two independent redox centers per unit cell; a nanoporous, open framework for rapid ion conduction; high stability during ion (de ...
Hurlbutt, K +3 more
openaire +1 more source
Carboxyphenolate Coordination Frameworks for High‐Voltage Calcium Storage
A hexaanionic carboxyphenolate coordination framework, Ca2‐M‐THBPD (M = Mg, Ca, Ba), exhibits ligand‐centered enolate‐quinonoid redox activity enabling tunable, high‐voltage Ca2+ storage (3.5 V vs Ca2+/Ca) modulated by spectator cations. The amorphous structure accommodates reversible divalent‐ion insertion, contributing to enhanced cycling stability ...
Vasudeva Rao Bakuru +12 more
wiley +1 more source
Prussian Blue Stain_Low Iron - 1 [PDF]
An image from a bone marrow particle smear stained with Perls Prussian Blue showing a decreased amount of blue-stained iron (10X)
To, Michelle, Kwon, Gloria
core +1 more source
Prussian blue pigment: Bridging the historical palette to modern innovations
This comprehensive review explores the multifaceted realm of Prussian Blue, a pigment with a rich history and varied applications tracing its origins, artistic applications, and chemical properties.
Manager Rajdeo Singh, Anjali Sharma
doaj +1 more source
Prussian blue nanoparticles synthesized from K4[Fe(CN)6]3H2O and Fe(NO3)3.9H2O, were characterized by Fourier transform infrared (FT-IR), X-ray diffraction (XRD), Energy dispersive spectroscopy (EDS), Scanning electron microscopy (SEM), and Raman ...
Abdullahi Mohamed Farah +4 more
doaj +1 more source
K+ pre‐intercalation in V2O5·nH2O induces interlayer contraction, oxygen‐vacancy formation, and mixed‐valence states, activating defect‐mediated proton‐dominated transport. This enables cooperative H+/Zn2+ storage with enhanced kinetics and stability. The resulting Zn‐based thin‐film and microbatteries deliver high areal energy and capacity, offering a
Jingli Luo +14 more
wiley +1 more source
Composite iron oxide–Prussian blue nanoparticles for magnetically guided T1-weighted magnetic resonance imaging and photothermal therapy of tumors [PDF]
Shraddha S Kale,1,2 Rachel A Burga,1,3 Elizabeth E Sweeney,1 Zungho Zun,4–6 Raymond W Sze,1,4–6 Anthony Tuesca,7 J Anand Subramony,7 Rohan Fernandes1,3,5,61The Sheikh Zayed Institute for Pediatric Surgical Innovation, Children’s ...
Sze RW +7 more
core
Prussian Blue Stain_Low Iron - 4 [PDF]
An image from a bone marrow particle smear stained with Perls Prussian Blue showing a decreased amount of blue-stained iron (50X oil immersion)
To, Michelle, Kwon, Gloria
core +1 more source
In this study, biosensors based on two types of screen-printed carbon and Prussian blue-carbon electrodes, respectively, modified with peroxidase extracted from horseradish root for the sensitive and selective detection of caffeic acid were developed ...
Andra Georgiana Trifan +1 more
doaj +1 more source
The study proposes a fitting curve as a reference to quantify the optimal K+ ratio in K+/Zn2+ mixed electrolyte, thus achieving stable and high‐capacity aqueous zinc ion batteries at each current density. ABSTRACT Incorporating K+ into Zn‐based electrolytes can enhance the performance of aqueous zinc ion batteries, while the lack of a clear rule for ...
Yewei Li +7 more
wiley +1 more source

