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Academic journal
& Earth Sciences ENERGY Inspec Materials Science Citation Index Science Citation Index Expanded "Overview". Advanced Energy Materials. Wiley Online Library
Advanced_Energy_Materials
Academic journal
1999 Advanced Functional Materials, 2001 Small, 2005 Advanced Energy Materials, 2011 Advanced Healthcare Materials, 2012 Advanced Optical Materials, 2013
Advanced_Materials
Energy materials are functional materials designed and processed for energy harvesting, storage, and conversion in modern technologies. This field merges
Energy_materials
American multinational technology company
Advanced Energy Industries, Inc. is an American multinational technology company headquartered in Denver, Colorado that develops precision power conversion
Advanced_Energy
Type of rechargeable battery
(June 2018). "Prussian Blue Cathode Materials for Sodium-Ion Batteries and Other Ion Batteries". Advanced Energy Materials. 8 (17) 1702619. Bibcode:2018AdEnM
Sodium-ion_battery
Composite Materials Advanced Materials Advanced Energy Materials Advanced Engineering Materials Advanced Functional Materials Advanced Optical Materials Annual
List of materials science journals
List_of_materials_science_journals
Academic journal
Energy Storage Materials is a peer-reviewed scientific journal published by Elsevier covering research and advances in the fields of advanced energy storage
Energy_Storage_Materials
Battery with solid electrodes and a solid electrolyte
Ni-Rich Cathode Material by Microscale Compositional Partition for Next-Generation Electric Vehicles". Advanced Energy Materials. 9 (15) 1803902. Bibcode:2019AdEnM
Solid-state_battery
Alternative to silicon-based photovoltaics
Cells: Structure, Optoelectronic Properties, and Device Design". Advanced Energy Materials. 11 (24) 2003877. Bibcode:2021AdEnM..1103877S. doi:10.1002/aenm
Perovskite_solar_cell
Materials whose temperature variance leads to voltage change
(2018). "Thermoelectric materials and applications for energy harvesting power generation". Science and Technology of Advanced Materials. 19 (1): 836–862. Bibcode:2018STAdM
Thermoelectric_materials
Change in temperature due to a magnetic field
019. Kitanovski, Andrej (March 2020). "Energy Applications of Magnetocaloric Materials". Advanced Energy Materials. 10 (10) 1903741. Bibcode:2020AdEnM.
Magnetocaloric_effect
Inorganic, nonmetallic solid prepared by the action of heat
more recent materials include aluminium oxide, more commonly known as alumina. Modern ceramic materials, which are classified as advanced ceramics, include
Ceramic
Research of materials
and advanced materials that are being developed include nanomaterials, biomaterials, and energy materials to name a few. The basis of materials science
Materials_science
Type of solid ionic conductor electrolyte
Progress of the Solid-State Electrolytes for High-Energy Metal-Based Batteries". Advanced Energy Materials. 8 (11) 1702657. Bibcode:2018AdEnM...802657F. doi:10
Solid-state_electrolyte
Research institute
cryptography, advanced materials, digital science, directed energy, secure systems, and more recently also: biotechnology, renewable and sustainable energy, and
Technology Innovation Institute
Technology_Innovation_Institute
List of journals about renewable energy
Research ACS Energy Letters ACS Sustainable Chemistry & Engineering Advanced Energy Materials Batteries Energy Energy & Environmental Science Energy Reports
List of renewable energy journals
List_of_renewable_energy_journals
Substance with high latent heat of melting or solidifying
A phase-change material (PCM) is a substance which releases/absorbs sufficient energy at phase transition to provide useful heat or cooling. Generally
Phase-change_material
Type of lithium-ion cell
Degradation Mechanisms of LiNi0.5Co0.2Mn0.3O2 Cathode Material in Lithium Ion Batteries". Advanced Energy Materials. 4 (1) 1300787. doi:10.1002/aenm.201300787.
Lithium ion manganese oxide battery
Lithium_ion_manganese_oxide_battery
Infinitely connected triply periodic minimal surface
Photocatalytic Hydrogen Evolution under UV and Visible Irradiation". Advanced Energy Materials. 8 (36) 1802566. doi:10.1002/aenm.201802566. S2CID 106140475.
Gyroid
Austrian researcher
the Royal Society of Chemistry, and a co-chair of the board of Advanced Energy Materials, which he established with Manfred Waidhaas in 2011. Brabec obtained
Christoph_J._Brabec
Laboratories owned by the United States Department of Energy
Center for Nanoscale Materials". Argonne National Laboratory. Retrieved February 19, 2023. "The Center for Nanophase Materials Sciences". Oak Ridge National
United States Department of Energy National Laboratories
United_States_Department_of_Energy_National_Laboratories
Solid forms of the element phosphorus
Phosphorus in Liquid with Tunable Thickness for Li-Ion Batteries". Advanced Energy Materials. 10 (31) 1903490. doi:10.1002/aenm.201903490. hdl:10397/100139
Allotropes_of_phosphorus
Lithium-ion battery cathode material
Lithium-Rich Layered Oxide Cathodes: Progress and Perspectives". Advanced Energy Materials. 6 (1) 1501010. doi:10.1002/aenm.201501010. S2CID 97342610. Warner
Lithium nickel manganese cobalt oxides
Lithium_nickel_manganese_cobalt_oxides
Chinese American scholar
in ACS, Energy and Environmental Science from Royal Society of Chemistry (RSC), Advanced Energy Materials and Advanced Functional Materials from Wiley
Yang_Shao-Horn
Dutch information technology company
ASM International N.V. (with ASM standing for Advanced Semiconductor Materials) is a Dutch multinational corporation that designs, manufactures, sells
ASM_International
The International Centre for Advanced Materials (ICAM) is a research partnership made up of the energy company BP and four universities: the University
International Centre for Advanced Materials
International_Centre_for_Advanced_Materials
Chemical element with atomic number 23 (V)
Vanadium Redox-Flow Battery with High Energy Density for Large-Scale Energy Storage". Advanced Energy Materials. 1 (3): 394–400. Bibcode:2011AdEnM...1
Vanadium
Method to produce electricity from solar radiation
(2011). "Abundant non-toxic materials for thin film solar cells: Alternative to conventional materials". Renewable Energy. 36 (10): 2753–2758. Bibcode:2011REne
Photovoltaics
Qatar University research center
the following areas: Metallurgy, Sustainable Materials, Corrosion, Polymer Materials and Renewable Energy Resources. In 2022, the UNESCO established a
Center_for_Advanced_Materials
American physicist and academic
is a chemical engineer, materials scientist, physicist, and the Johansen Crosby Professor of Chemical Engineering and Materials Science at Michigan State
Richard_Lunt
Reversible insertion of an ion into a material with layered structure
Lithium Metal Penetration through Inorganic Solid Electrolytes". Advanced Energy Materials. 7 (20). Bibcode:2017AdEnM...701003P. doi:10.1002/aenm.201701003
Intercalation_(chemistry)
Fuel cell that produces electricity by oxidization
Qiang (2012). "Solid Oxide Fuel Cell Anode Materials for Direct Hydrocarbon Utilization". Advanced Energy Materials. 2 (10): 1156–1181. Bibcode:2012AdEnM.
Solid_oxide_fuel_cell
Type of electrochemical cell
Qing (June 2022). "Redox Targeting of Energy Materials for Energy Storage and Conversion". Advanced Materials. 34 (25) e2104562. Bibcode:2022AdM....3404562Z
Flow_battery
Ratio of energy extracted from sunlight in solar cells
Kirchartz, Thomas; Rau, Uwe (2018). "What Makes a Good Solar Cell?". Advanced Energy Materials. 8 (28) 1703385. Bibcode:2018AdEnM...803385K. doi:10.1002/aenm
Solar-cell_efficiency
Electrolytes for High-Performance Lithium Batteries: A Review". Advanced Energy Materials. 8 (12) 1702675. Bibcode:2018AdEnM...802675C. doi:10.1002/aenm
Ion_gel
Agency of the U.S. Energy Department
ARPA-E, or Advanced Research Projects Agency–Energy is an agency within the United States Department of Energy tasked with funding the research and development
ARPA-E
German physicist
voltage in perovskite solar cells, with results published in Advanced Energy Materials. The paper has become one of the most-cited articles in the journal
Ulrich_Wilhelm_Paetzold
American materials scientist, engineer and academic
W. Craig Carter is an American materials scientist, a Toyota Professor of Materials Science and Engineering at Massachusetts Institute of Technology. He
W._Craig_Carter
Electricity-induced chemical reaction
for Electrochemical Hydrogen Evolution". Advanced Energy Materials. 9 (22) 1900516. AdvancedEnergyMaterials. Bibcode:2019AdEnM...900516K. doi:10.1002/aenm
Electrolysis_of_water
American nuclear energy company
notably through the Department of Energy's (DOE) Advanced Reactor Concept Cooperative Agreement in 2016 and its Advanced Reactor Demonstration Program (ARDP)
X-energy
Type of electrochemical cell
H. R. (2013). "High-Performance Lithium-Iodine Flow Battery". Advanced Energy Materials. 3 (12): 1630. doi:10.1002/aenm.201300627. S2CID 98455413. Wang
Lithium-ion_flow_battery
Japanese chemist
cell fabricated in ambient air under controlled humidity." In: "Advanced Energy Materials." 8(3), 2018, 1700677.https://onlinelibrary.wiley.com/doi/abs/10
Tsutomu_Miyasaka
and coated (with various materials) to improve electrical characteristics. Depending on materials choices, the voltage, energy density, life, and safety
Lithium-ion battery components
Lithium-ion_battery_components
Modified type of wood made transparent
Composite as an Energy Efficient Building Material: Guided Sunlight Transmittance and Effective Thermal Insulation". Advanced Energy Materials. 6 (22) 1601122
Transparent_wood_composite
List of academic journals covering energy
ACS Applied Energy Materials ACS Energy Letters Advanced Energy Materials Batteries Energy & Environmental Science Energy & Fuels Energy Conversion and
List_of_energy_journals
Research laboratory in Illinois, US
The Advanced Materials for Energy-Water Systems (AMEWS) Center is an Energy Frontier Research Center sponsored by the U.S. Department of Energy. Led
Argonne_National_Laboratory
Designated by governments as critical for economies
technologies and energy transition. Critical raw materials usually include technology-critical elements, rare-earth elements, and/or strategic materials. Demand
Critical_raw_materials
Building for growing plants
covered with transparent materials that let sunlight enter and that inhibit the loss of the sun's heat. The most common materials used in modern greenhouses
Greenhouse
Crystalline materials consisting of a single layer of atoms
In materials science, the term single-layer materials or 2D materials refers to crystalline solids consisting of a single layer of atoms. More broadly
Single-layer_materials
Cathode material for lithium batteries
Mn y PO 4 (0.5 ≤ y < 1.0) Cathode Materials for High Energy Density Lithium Ion Batteries". Advanced Energy Materials. 7 (13) 1601958. doi:10.1002/aenm
Lithium_iron_phosphate
Type of photovoltaic
Miscibility in a Photovoltaically Active Blend (Adv. Energy Mater. 2/2011)". Advanced Energy Materials. 1 (2): 145. doi:10.1002/aenm.201190008. Kozub, Derek
Organic_solar_cell
Program office of the U.S. Department of Energy
of Energy. The office supports research, development, demonstration, and deployment programs related to critical materials, manufacturing, energy technology
Office of Energy Efficiency and Renewable Energy
Office_of_Energy_Efficiency_and_Renewable_Energy
Manufacturer of advanced ceramic, carbon and composite products
Morgan Advanced Materials plc is a company which manufactures specialist products, using carbon, advanced ceramics and composites. The group is headquartered
Morgan_Advanced_Materials
American semiconductor equipment company
Applied Materials purchased Baccini, an Italian company and designer of tools used in manufacturing solar cells. In 2009, Applied Materials opened its
Applied_Materials
Engineered materials company
specializing in high-performance advanced materials. Among its products are advanced beryllium metals, thin film deposition materials, high-performance alloys
Materion
Class of solid materials
(October 2016). "Recent Progress in Electrode Materials for Sodium-Ion Batteries". Advanced Energy Materials. 6 (19) 1600943. doi:10.1002/aenm.201600943
NASICON
MOSFET technology node
Hübler, Arved; et al. (2011). "Printed Paper Photovoltaic Cells". Advanced Energy Materials. 1 (6): 1018–1022. Bibcode:2011AdEnM...1.1018H. doi:10.1002/aenm
14_nm_process
and the Light-Soaking Issue in Inverted Organic Solar Cells". Advanced Energy Materials. 6 (6) 1502265. doi:10.1002/aenm.201502265. S2CID 101910135. Kim
Light_soaking
British microbial and plant scientist
Concurrent Production of Crops and Electricity on the Same Cropland". Advanced Energy Materials. 10 (35) 2001189. Bibcode:2020AdEnM..1001189T. doi:10.1002/aenm
Elinor_P._Thompson
Battery with a calcium electrode
High Capacity Calcium Primary Cell Based on the Ca-S System". Advanced Energy Materials. 3 (8): 1056–1061. Bibcode:2013AdEnM...3.1056S. doi:10.1002/aenm
Calcium_battery
Calcium titanium oxide mineral
Double Perovskite Oxides as Energy Materials: A Theoretical Insight from Electronic and Optical Properties". ACS Materials Au. 2 (6): 655–664. doi:10.1021/acsmaterialsau
Perovskite
Research institute in Shenzhen, China
The Hoffmann Institute of Advanced Materials (HIAM) is a science research institute affiliated to Shenzhen Polytechnic in Shenzhen, China. As the eighth
Hoffmann Institute of Advanced Materials
Hoffmann_Institute_of_Advanced_Materials
Spectroscopic technique
Process Monitoring Methodologies Based on Combinatorial Analysis". Advanced Energy Materials. 12 (8) 2103163. Bibcode:2022AdEnM..1203163F. doi:10.1002/aenm
Raman_spectroscopy
Moroccan scientist
(October 2012). "Nanostructured high-energy cathode materials for advanced lithium batteries". Nature Materials. 11 (10): 942–947. Bibcode:2012NatMa.
Khalil_Amine
Chemical compound
Trimolybdenum Phosphide (Mo 3 P) for Electrochemical Hydrogen Evolution". Advanced Energy Materials. 9 (22). Bibcode:2019AdEnM...900516K. doi:10.1002/aenm.201900516
Trimolybdenum_phosphide
Type of battery
Initial Review of the Status of Electrode Materials for Potassium-Ion Batteries". Advanced Energy Materials. 7 (24) 1602911. Bibcode:2017AdEnM...702911P
Potassium-ion_battery
American physicist (1944–2023)
papers on such topics as next-generation battery materials, sustainable energy, energy policy, materials science, nanoscale superconductors and magnets
George_Crabtree
Type of metallic alloy
Doping in Nominally 19-Electron Half-Heusler Thermoelectric Materials". Advanced Energy Materials. 8 (30): 1–6. Bibcode:2018AdEnM...801409A. doi:10.1002/aenm
Heusler_compound
to electric double-layer materials, pseudocapacitive and faradaic materials have also been investigated to increase the energy density of electrochemical
Electrochemical flow capacitor
Electrochemical_flow_capacitor
Process that removes material from an object by heating it with a laser
Phosphorus in Liquid with Tunable Thickness for Li-Ion Batteries". Advanced Energy Materials. 10 (31) 1903490. Bibcode:2020AdEnM..1003490Z. doi:10.1002/aenm
Laser_ablation
Dutch photolithography company
ASML Holding N.V. (originally an abbreviation of Advanced Semiconductor Materials Lithography) is a Dutch company that develops and manufactures photolithography
ASML
Primary or secondary battery
Sulfur Batteries with Modified Non-Nucleophilic Electrolytes". Advanced Energy Materials. 5 (3) 1401155. Bibcode:2015AdEnM...501155Z. doi:10.1002/aenm
Magnesium_battery
German chemist
In: Advanced Energy Materials. 3, 2013, S. 1025–1028, doi:10.1002/aenm.201300036. Markus J. Barthel, Tobias Rudolph u. a.: Self-Healing Materials via
Ulrich_S._Schubert
Stanford Advanced Materials. November 25, 2025. Retrieved June 23, 2026. SS Rattan, Strength of Materials (17 June 2016). "Strength of Materials book".
List_of_materials_properties
U.S. government department regulating energy production and nuclear material handling
fuel cores at locations such as Fernald Feed Materials Production Center in Cincinnati, Ohio. The Energy Reorganization Act of 1974 split the responsibilities
United States Department of Energy
United_States_Department_of_Energy
Chemical compound
Dark Hysteresis Correlate in NiO-Based Perovskite Solar Cells". Advanced Energy Materials. 9 (31) 1901642. Bibcode:2019AdEnM...901642D. doi:10.1002/aenm
Nickel(II)_oxide
German chemist
Derived Carbon–FeF2 Nanocomposites for Reversible Lithium Storage". Advanced Energy Materials. 3 (3): 308–313. doi:10.1002/aenm.201200788. ISSN 1614-6840. S2CID 97742595
Maximilian_Fichtner
Significantly Enhance the Performance of a Working Fuel Cell" (PDF). Advanced Energy Materials. 7 (5) 1601216. doi:10.1002/aenm.201601216. S2CID 96454279. Hu
Potential applications of graphene
Potential_applications_of_graphene
Indian-born American physicist and nanomaterials researcher
& Podila, R. (2018). A wireless triboelectric nanogenerator. Advanced Energy Materials, 8(10), 1702736. Podila was named as a Fellow of the Royal Society
Ramakrishna_Podila
Small electrical generator
ISSN 0964-1726. Sirohi, Jayant (2021), "Wind energy harvesting using piezoelectric materials", Ferroelectric Materials for Energy Harvesting and Storage, Elsevier
Nanogenerator
Reproducible Sn-Based Hybrid Perovskite Solar Cells with 9% Efficiency". Advanced Energy Materials. 8 (4) 1702019. Bibcode:2018AdEnM...802019S. doi:10.1002/aenm
Tin-based perovskite solar cell
Tin-based_perovskite_solar_cell
Change—published by Nature Portfolio Advanced Energy Materials—published by Wiley-VCH Energies—published by MDPI Energy & Environment – edited by Sonja
List of environmental journals
List_of_environmental_journals
Singaporean-American materials scientist
International Battery Materials Association (IBA) 2021, Fellow of the Materials Research Society 2022, Department of Energy (DOE): Clean Energy Education & Empowerment
Shirley_Meng
materials or involving solid species in the energy carrying fluid. A research team in MIT proposed this concept using lithium-ion battery materials.
Semi-solid_flow_battery
Material composed of nanosized cellulose fibrils
family of cellulosic materials that have at least one of their dimensions in the nanoscale. Examples of nanocellulosic materials are microfibrilated cellulose
Nanocellulose
Professor of Optoelectronics
of the Editorial Advisory Boards for the journals ACS Energy Letters and Advanced Energy Materials. In 2018, Stranks received the Institute of Physics Henry
Sam_Stranks
Sulfur Batteries with Modified Non-Nucleophilic Electrolytes". Advanced Energy Materials. 5 (3): n/a. Bibcode:2015AdEnM...501155Z. doi:10.1002/aenm.201401155
Magnesium_sulfur_battery
Crystalline structure of phosphorus
Phosphorus in Liquid with Tunable Thickness for Li-Ion Batteries". Advanced Energy Materials. 10 (31) 1903490. Bibcode:2020AdEnM..1003490Z. doi:10.1002/aenm
Phosphorene
Power generation technology
Cells: A Review and Perspective on Novel Engineering Approaches". Advanced Energy Materials. 8 (4) 1701257. Bibcode:2018AdEnM...801257B. doi:10.1002/aenm
Proton-exchange membrane fuel cell
Proton-exchange_membrane_fuel_cell
Type of crystal structure
solar energy are materials of the type [R4N]+[MX3]−. Thus, the quat cation occupies the B site and the metals occupy the A sites.These materials are the
Perovskite_(structure)
Italian physicist
member of the Zernike Institute for Advanced Materials. Her research considers the development of functional materials for low-cost, high efficiency optoelectronic
Maria_Antonietta_Loi
Nuclear research facility in Mumbai, India
spectroscopy. Important research areas include advanced magnetism, soft and nano structured materials, energy materials, thin film and multi-layers, accelerator/reactor
Bhabha_Atomic_Research_Centre
Electricity generation by nuclear fusion
barriers: Basic requirements, materials selection, deposition methods, and quality evaluation". Nuclear Materials and Energy. 19: 451–457. Bibcode:2019NMEne
Fusion_power
Chemical compound
Characteristics of CZTSSe Thin-Film Solar Cells with 12.6% Efficiency". Advanced Energy Materials. 4 (7) 1301465. Bibcode:2014AdEnM...401465W. doi:10.1002/aenm
CZTS
Glass type
(2016). "Nanostructured Anode Materials for Lithium Ion Batteries: Progress, Challenge and Perspective". Advanced Energy Materials. 6 (17) 1600374. doi:10.1002/aenm
Oxycarbide_glass
dimerization on the performance of bulk heterojunction solar cells". Advanced Energy Materials. 4 (1) 1300693. Bibcode:2014AdEnM...400693D. doi:10.1002/aenm
Non-fullerene_acceptor
American engineer and professor
Chiang (2011). "Semi-Solid Lithium Rechargeable Flow Battery". Advanced Energy Materials. 1 (4): 511–516. doi:10.1002/aenm.201100152. Wikidata Q56618663
Vanessa_Wood
"High-Performance Relaxor Ferroelectric Materials for Energy Storage Applications". Advanced Energy Materials. 9 (17) 1803048. doi:10.1002/aenm.201803048
Relaxor_ferroelectric
Capacity of a substance to dissolve in a homogeneous way
Reveals Thermodynamic Route to High Thermoelectric Efficiency". Advanced Energy Materials. 11 (20) 2100181. doi:10.1002/aenm.202100181. OSTI 1777525. S2CID 234807088
Solubility
Thermodynamic process
Flexible Battery Dilemma: Ultrahigh Energy/Power Density and Uncompromised Mechanical Compliance". Advanced Energy Materials. 12 (14) 2200233. Bibcode:2022AdEnM
Directional_freezing
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ADVANCED ENERGY-MATERIALS
ADVANCED ENERGY-MATERIALS
ADVANCED ENERGY-MATERIALS
ADVANCED ENERGY-MATERIALS
ADVANCED ENERGY-MATERIALS
ADVANCED ENERGY-MATERIALS
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