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fepo4 (242) 242
materials science, multidisciplinary (119) 119
chemistry, physical (114) 114
lifepo4 (111) 111
electrochemistry (96) 96
lithium (78) 78
fepo (61) 61
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physics, condensed matter (43) 43
electrochemical performance (41) 41
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iron phosphate (38) 38
nanoscience & nanotechnology (38) 38
kathodenwerkstoff (37) 37
lifepo (36) 36
electrodes (34) 34
chemistry (33) 33
amorphous fepo4 (32) 32
carbon (30) 30
iron-phosphate (28) 28
phosphate (27) 27
rechargeable lithium batteries (26) 26
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temperature (25) 25
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physics, applied (24) 24
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sodium (23) 23
ableitvermögen (22) 22
ion batteries (22) 22
lixfepo4 (22) 22
engineering, chemical (21) 21
metallurgy & metallurgical engineering (21) 21
analysis (20) 20
composite (20) 20
index medicus (19) 19
nanopartikel (19) 19
route (19) 19
crystal-structure (18) 18
electrode (18) 18
lifepo4/fepo4 (18) 18
lithium ion batteries (18) 18
lithiumionenbatterie (18) 18
rechargeable batteries (18) 18
carbon nanotubes (17) 17
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kathode (17) 17
lithium-ion battery (17) 17
phase-transition (17) 17
röntgendiffraktion (17) 17
synthesis (17) 17
behavior (16) 16
energy-storage (16) 16
komposit (16) 16
lithium iron phosphate (16) 16
phospho-olivines (16) 16
adsorption (15) 15
chemistry, inorganic & nuclear (15) 15
discharge-capacity (15) 15
iron phosphates (15) 15
lithium-iron-phosphate (15) 15
phosphat (15) 15
storage (15) 15
x-ray-diffraction (15) 15
energy (14) 14
kinetics (14) 14
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li-ion-batteries (14) 14
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capacity (13) 13
environmental sciences (13) 13
graphene (13) 13
hydrothermal synthesis (13) 13
materials science, ceramics (13) 13
natrium (13) 13
room-temperature (13) 13
separation (13) 13
transition (13) 13
anode (12) 12
diffraction (12) 12
diffusion (12) 12
discharge (12) 12
elektrode (12) 12
li extraction (12) 12
materials science (12) 12
mesoporous fepo4 (12) 12
oxidation (12) 12
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Talanta, ISSN 0039-9140, 05/2018, Volume 181, pp. 352 - 358
Superparamagnetic Fe3O4@FePO4 nanoparticles with core shell structure were prepared by coating iron phosphate on the surface of Fe3O4 nanoparticles by liquid... 
Preconcentration | Cadmium | Magnetic | Adsorption | ETAAS | FePO4 | FePO
Journal Article
Journal of Environmental Sciences, ISSN 1001-0742, 02/2019, Volume 76, pp. 188 - 198
Phosphate residue is regarded as a hazardous waste, which could potentially create significant environmental and health problems if it is not properly treated... 
Fenton-like | Nitrogen-doped carbon nanotubes-FePO4 | Phosphate residue | Hydroxyl radical | GRAPHENE OXIDE | METAL-ORGANIC FRAMEWORK | ADSORPTION | AMOXICILLIN | FEPO4 | AQUEOUS-SOLUTION | Nitrogen-doped carbon | ENVIRONMENTAL SCIENCES | ACTIVATED CARBON | HYDROGEN-PEROXIDE | nanotubes-FePO4 | ELECTROCHEMICAL PERFORMANCE | Index Medicus
Journal Article
Ceramics International, ISSN 0272-8842, 01/2020
Journal Article
Electrochimica Acta, ISSN 0013-4686, 02/2016, Volume 190, pp. 134 - 140
•A novel process has been demonstrated to recycle spent LiFePO4.•FePO4·2H2O and LiH2PO4 were recovered separately from spent LiFePO4.•LiFePO4/C hierarchical... 
FePO4·2H2O | recycling | Spent LiFePO4 | hierarchical microflowers | Spent LiFePO | 2H | FePO | OXIDATION | ELECTROCHEMISTRY | ROUTE | PERFORMANCE | CATHODE MATERIALS | PHOSPHATE | RECOVERY | FE(II) | FePO4 center dot 2HO | LITHIUM-ION BATTERIES | CHEMICAL PRECIPITATION | COBALT
Journal Article
ELECTROCHEMISTRY COMMUNICATIONS, ISSN 1388-2481, 05/2013, Volume 30, pp. 87 - 90
We developed an environmentally friendly, one-pot, solution-based method to synthesize a FePO4 center dot H2O/carbon nanotube coaxial nanocomposite for lithium... 
Carbon nanotube | ELECTROCHEMISTRY | FePO4 center dot H2O/carbon nanotube coaxial nanocomposite | AMORPHOUS FEPO4 | Li-ion battery | PERFORMANCE | FePO4 center dot H2O | ENERGY-STORAGE | CATHODE MATERIALS | CARBON NANOTUBES
Journal Article
Biosensors and Bioelectronics, ISSN 0956-5663, 05/2017, Volume 91, pp. 367 - 373
Journal Article
Materials Letters, ISSN 0167-577X, 12/2018, Volume 233, pp. 290 - 293
[Display omitted] •Nanoplates were exfoliated from flaky iron phosphate dihydrate particles.•Amorphous structure was fabricated within 1 h.•The source material... 
Liquid exfoliation | FePO4·2H2O | Atomic force microscopy | Nanosize | Amorphous materials | 2H | FePO | PHYSICS, APPLIED | MATERIALS SCIENCE, MULTIDISCIPLINARY | FERTILIZERS | FePO4 center dot 2HO | Phosphates | Ponds | Computer storage devices
Journal Article
Electrochemistry Communications, ISSN 1388-2481, 08/2012, Volume 22, pp. 149 - 152
The behavior of a NaFePO4 cathode, obtained by electrochemical Li―Na exchange of LiFePO4 olivine, is characterized in a sodium battery. The NaFePO4 electrode... 
Olivine | NaFePO4 | Secondary batteries | ELECTROCHEMISTRY | CELLS | PHASES | ION BATTERIES | INSERTION | STABILITY | NACRO2 | FEPO4 | PHOSPHATE | CATHODE | RECHARGEABLE LITHIUM BATTERIES
Journal Article
Desalination, ISSN 0011-9164, 11/2015, Volume 376, pp. 35 - 40
Extraction of lithium from brine is becoming a focus of importance worldwide. Lithium was extracted from brine by membrane electrolysis in this paper, and the... 
Lithium extraction | Membrane electrolysis | Salt lake brine | LiFePO4/FePO4 electrode | electrode | LiFePO | FePO | LI EXTRACTION | SYSTEM | ENGINEERING, CHEMICAL | MAGNESIUM | LIFEPO4/FEPO4 | NA+ | WATER RESOURCES | SEPARATION | Electrolysis | Exchange | Electrodes | Membranes | Salt water | Lithium | Extraction | Anolytes
Journal Article
by Zhu, YM and Tang, SZ and Shi, HH and Hu, HL
CERAMICS INTERNATIONAL, ISSN 0272-8842, 03/2014, Volume 40, Issue 2, pp. 2685 - 2690
Amorphous hydrated iron (III) phosphate has been synthesized by a coordinate precipitation method from equimolecular Fe(NO3)(3) and (NH4)(2)HPO4 solutions at... 
Lithium ion battery | MESOPOROUS FEPO4 | IRON PHOSPHATE | PRECIPITATION | Coordinate precipitation | LiFePO4 | RECHARGEABLE LITHIUM BATTERIES | MATERIALS SCIENCE, CERAMICS | FePO4 | ELECTROCHEMICAL PERFORMANCE
Journal Article
by Wang, ZY and Lu, YC
ACS APPLIED MATERIALS & INTERFACES, ISSN 1944-8244, 04/2019, Volume 11, Issue 14, pp. 13225 - 13233
A facile strategy to construct composites of amorphous FePO4 (a-FePO4) nanoparticles and carbon additives with high dispersion and tap density was developed I... 
CAPACITY | hybrid carbon additives | NETWORK | MATERIALS SCIENCE, MULTIDISCIPLINARY | LIFEPO4 CATHODES | NANOSCIENCE & NANOTECHNOLOGY | COMPOSITES | cathode construction | FEPO4 | CARBON NANOTUBES | NANOPARTICLES | carbon materials | ENERGY-CONVERSION | amorphous FePO4 | BLACK | lithium-ion battery | HYBRID CONDUCTIVE ADDITIVES
Journal Article
Small, ISSN 1613-6810, 04/2013, Volume 9, Issue 7, pp. 1036 - 1041
Journal Article
INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE, ISSN 1452-3981, 03/2018, Volume 13, Issue 3, pp. 2498 - 2508
To study the effect of dehydration temperature on synthesis and electrochemical performance of LiFePO4/C, FePO4 center dot 2H(2)O is dehydrated at different... 
Lithium ion batteries | PHOSPHATE | ELECTROCHEMISTRY | LiFePO4 | SIZE | COMPOSITES | FePO4 center dot 2HO | Cathode materials | Dehydration | FEPO4
Journal Article
Materials Letters, ISSN 0167-577X, 05/2014, Volume 123, pp. 128 - 130
The FePO4·2H2O submicrometer-discs with a diameter of 1–1.5μm and thickness of 300–500nm are successfully synthesized through a facile heat reflux method. The... 
FePO4·2H2O | Nanosize | Submicrometer-discs | Microstructure | Particles
Journal Article
by Li, C and Guo, ZY and Pang, Y and Sun, YH and Su, XL and Wang, YG and Xia, YY
ACS APPLIED MATERIALS & INTERFACES, ISSN 1944-8244, 11/2016, Volume 8, Issue 46, pp. 31638 - 31645
The Li-O-2 battery is receiving much recent attention because of its superhigh theoretical energy density. However, its performance is limited by the... 
Li-O-2 battery | high cycling stability | ION BATTERIES | CARBON | STABILITY | MATERIALS SCIENCE, MULTIDISCIPLINARY | NANOSCIENCE & NANOTECHNOLOGY | COMPOSITES | PERFORMANCE CATHODE CATALYST | three-dimensional ordered macroporous | Li-FePO4 battery | LONG-LIFE | REDUCTION | LITHIUM-OXYGEN BATTERIES | AIR BATTERIES | ELECTRODE | FePO4
Journal Article
NPG Asia Materials, ISSN 1884-4049, 01/2014, Volume 6, Issue 10, pp. e138 - e138
In response to the ever-increasing global demand for viable energy-storage systems, sodium and potassium batteries appear to be promising alternatives to... 
NANOPARTICLES | LI-ION | STABILITY | MATERIALS SCIENCE, MULTIDISCIPLINARY | SODIUM-ION | ELECTROCHEMICAL-BEHAVIOR | DIFFUSION | LITHIUM | FEPO4 | BATTERIES | CATHODE MATERIAL
Journal Article
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