-
Due to their high ionic conductivity and adeciduate mechanical features for lamination, sulfide composites have received increasing attention as solid electrolyte in all-solid-state batteries. Their smaller electronegativity and binding energy to Li ions and b…
openalex
Qing Zhang, Daxian Cao, Yi Ma, Avi Natan 等
2019-08-22
置信度 0.72
SulfideMaterials scienceElectrolyteFast ion conductorIonic conductivity
-
openalex
Chunpeng Yang, Qisheng Wu, Weiqi Xie, Xin Zhang 等
2021-10-20
置信度 0.72
Materials scienceElectrical conductorIonCathodeAnode
-
In this Perspective, we highlight recent progress and challenges related to the integration of lithium metal anodes in solid-state batteries. While prior reports have suggested that solid electrolytes may be impermeable to lithium metal, this hypothesis has be…
openalex
Kelsey B. Hatzell, X. Chelsea Chen, Corie L. Cobb, Neil P. Dasgupta 等
2020-02-18
置信度 0.72
ElectrolyteLithium (medication)Lithium metalAnodeFast ion conductor
-
openalex
Qing Zhao, Sanjuna Stalin, Chen‐Zi Zhao, Lynden A. Archer
2020-02-05
置信度 0.72
ElectrolyteMaterials scienceNanotechnologyEnergy storageOrganic radical battery
-
All-solid-state lithium batteries (ASSLBs) are considered as the next generation electrochemical energy storage devices because of their high safety and energy density, simple packaging, and wide operable temperature range. The critical component in ASSLBs is …
openalex
Jinghua Wu, Sufu Liu, Fudong Han, Xiayin Yao 等
2020-08-18
置信度 0.72
ElectrolyteSulfideElectrochemical windowMaterials scienceElectrochemistry
-
The volume effects of electrode materials can cause local stress development, contact loss and particle cracking in the rigid environment of a solid-state battery.
openalex
Raimund Koerver, Wenbo Zhang, Lea de Biasi, Simon Schweidler 等
2018-01-01
置信度 0.72
ElectrodeMaterials scienceElectrolyteBattery (electricity)Lithium (medication)
-
openalex
Alex Bates, Yuliya Preger, Loraine Torres-Castro, Katharine L. Harrison 等
2022-03-07
置信度 0.72
Flammable liquidElectrolyteBattery (electricity)Materials scienceLithium (medication)
-
All-solid-state lithium ion batteries may become long-term, stable, high-performance energy storage systems for the next generation of electric vehicles and consumer electronics, depending on the compatibility of electrode materials and suitable solid electrol…
openalex
Raimund Koerver, Isabel Aygün, Thomas Leichtweiß, Christian Dietrich 等
2017-06-09
置信度 0.72
ElectrolyteMaterials scienceCathodeFast ion conductorSulfide
-
crossref
Robert A. Huggins
2012-07-29T00:15:38Z
置信度 0.70
-
crossref
Gregory C. Farrington
2012-07-29T00:15:38Z
置信度 0.70
-
crossref
2018-06-04T01:21:48Z
置信度 0.70
-
crossref
Alok Kumar Chaudhary
2025-06-26T11:47:16Z
置信度 0.70
-
crossref
Se-Hee Lee
2002-07-28T18:24:10Z
置信度 0.70
-
crossref
J REA, G KELSEY, H KUO, M KALLIANIDIS
2002-10-18T07:24:48Z
置信度 0.70
-
crossref
Amrtha Bhide, K. Hariharan
2010-06-12T04:41:30Z
置信度 0.70
-
crossref
Robert A. Huggins
2002-10-18T07:24:48Z
置信度 0.70
-
crossref
Joze Moskon, Janko Jamnik, Miran Gaberscek
2013-03-29T02:48:19Z
置信度 0.70
-
crossref
B Scrosati
2002-10-18T03:24:48Z
置信度 0.70
-
crossref
2023-11-27T16:50:17Z
置信度 0.70
-
crossref
L YANG, Z SHAN, Y LIU
2002-10-18T03:23:47Z
置信度 0.70
-
openalex
T. Nejat Veziroğlu, Sümer Şahi ̇n
2008-02-07
置信度 0.72
Energy (signal processing)Hydrogen fuelHydrogenEnvironmental scienceNuclear engineering
-
openalex
S. V. Grigoriev, V. N. Porembsky, В. Н. Фатеев
2005-06-14
置信度 0.72
Proton exchange membrane fuel cellHydrogen productionPolymer electrolyte membrane electrolysisElectrolysisHydrogen
-
openalex
Thanh Tuan Le, Prabhakar Sharma, Bhaskor Jyoti Bora, Việt Dũng Trần 等
2023-08-19
置信度 0.72
SustainabilitySoftware deploymentHydrogen technologiesEnvironmental economicsWork (physics)
-
Hydrogen has been ‘just around the corner’ for decades, but now offers serious alternatives for decarbonising global heat, power and transport.
openalex
Iain Staffell, Daniel Scamman, Anthony Velazquez Abad, Paul Balcombe 等
2018-12-10
置信度 0.72
Hydrogen fuelFuel cellsEnvironmental scienceHydrogenEnergy system
-
Abstract Artificial photosynthesis provides a blueprint to harvest solar energy to sustain the future energy demands. Solar‐driven water splitting, converting solar energy into hydrogen energy, is the prototype of photosynthesis. Various systems have been desi…
openalex
Jing Qi, Wei Zhang, Rui Cao
2017-10-23
置信度 0.72
Water splittingSolar energyArtificial photosynthesisHydrogen fuelChemical energy
-
openalex
Carl‐Jochen Winter
2009-06-27
置信度 0.72
Hydrogen economyElectricityFossil fuelHydrogen fuelEnvironmental science
-
Hydrogen technologies can play an important role in decarbonising our energy system in a variety of ways across the energy value chain. It is therefore critical to identify the strategic roles as well as the conditions under which hydrogen energy systems becom…
openalex
David Parra, Luís Valverde, Javier Pino, M. Patel
2018-11-29
置信度 0.72
Hydrogen technologiesEnergy carrierEnvironmental economicsElectricityIndustrial organization
-
The problem of anthropogenically driven climate change and its inextricable link to our global society's present and future energy needs are arguably the greatest challenge facing our planet. Hydrogen is now widely regarded as one key element of a potential en…
openalex
Peter P. Edwards, В. Л. Кузнецов, William I. F. David
2007-02-01
置信度 0.72
Energy carrierHydrogen economySustainabilityFossil fuelEnergy security
-
openalex
Xianxian Xu, Quan Zhou, Dehai Yu
2022-09-01
置信度 0.72
Hydrogen technologiesHydrogen productionFossil fuelRenewable energyHydrogen
-
openalex
Ahmet Özarslan
2012-08-11
置信度 0.72
Compressed air energy storageEnergy storageNatural gas storageRenewable energyEnvironmental science
-
openalex
Solomon Evro, Babalola Aisosa Oni, Olusegun Stanley Tomomewo
2024-07-05
置信度 0.72
HydrogenCarbon fibersCarbon neutralityNeutralityHydrogen fuel
-
crossref
2003-11-01T11:12:40Z
置信度 0.70
-
openalex
Hsinhan Tsai, Wanyi Nie, Jean‐Christophe Blancon, Constantinos C. Stoumpos 等
2016-07-05
置信度 0.72
Perovskite (structure)Energy conversion efficiencyMaterials sciencePhotovoltaicsThin film
-
Perovskite solar cells (PSCs) have witnessed rapidly rising power conversion efficiencies, together with advances in stability and upscaling. Despite these advances, their limited stability and need to prove upscaling remain crucial hurdles on the path to comm…
openalex
Yaoguang Rong, Yue Hu, Anyi Mei, Hairen Tan 等
2018-09-20
置信度 0.72
CommercializationPhotovoltaic systemPerovskite (structure)NanotechnologyBiochemical engineering
-
openalex
Jason J. Yoo, Gabkyung Seo, Matthew R. Chua, Tae Gwan Park 等
2021-02-24
置信度 0.72
Photovoltaic systemOptoelectronicsMaterials scienceEnergy conversion efficiencyPerovskite (structure)
-
Solar cells based on organic-inorganic halide perovskites have recently shown rapidly rising power conversion efficiencies, but exhibit unusual behaviour such as current-voltage hysteresis and a low-frequency giant dielectric response. Ionic transport has been…
openalex
Christopher Eames, Jarvist M. Frost, Piers R. F. Barnes, Brian C. O’Regan 等
2015-06-24
置信度 0.72
IodideHalidePerovskite (structure)Ionic bondingChemical physics
-
openalex
Feng Hao, Constantinos C. Stoumpos, Duyen H. Cao, Robert P. H. Chang 等
2014-05-03
置信度 0.72
Perovskite (structure)Energy conversion efficiencyMaterials scienceOptoelectronicsPhotovoltaic system
-
openalex
Jaeki Jeong, Minjin Kim, Jongdeuk Seo, Haizhou Lu 等
2021-04-05
置信度 0.72
FormamidiniumTriiodideHalidePerovskite (structure)Materials science
-
State-of-the-art photovoltaics use high-purity, large-area, wafer-scale single-crystalline semiconductors grown by sophisticated, high-temperature crystal growth processes. We demonstrate a solution-based hot-casting technique to grow continuous, pinhole-free …
openalex
Wanyi Nie, Hsinhan Tsai, Reza Asadpour, Jean‐Christophe Blancon 等
2015-01-29
置信度 0.72
Materials sciencePerovskite (structure)PhotovoltaicsWaferSolar cell
-
All highly-efficient organic-inorganic halide perovskite (OIHP) solar cells to date are made of polycrystalline perovskite films which contain a high density of defects, including point and extended imperfections. The imperfections in OIHP materials play an im…
openalex
Bo Chen, Peter N. Rudd, Shuang Yang, Yongbo Yuan 等
2019-01-01
置信度 0.72
PassivationPerovskite (structure)HalideMaterials scienceCrystallite
-
openalex
Qianqian Lin, Ardalan Armin, Ravi Chandra Raju Nagiri, Paul L. Burn 等
2014-12-01
置信度 0.72
Perovskite (structure)DielectricMaterials scienceOptoelectronicsPhotovoltaic system
-
The performance of organometallic perovskite solar cells has rapidly surpassed that of both conventional dye-sensitized and organic photovoltaics. High-power conversion efficiency can be realized in both mesoporous and thin-film device architectures. We addres…
openalex
Jarvist M. Frost, Keith T. Butler, Federico Brivio, Christopher H. Hendon 等
2014-03-31
置信度 0.72
Perovskite (structure)Materials scienceOptoelectronicsBand gapPhotovoltaics
-
We fabricated a perovskite solar cell that uses a double layer of mesoporous TiO2 and ZrO2 as a scaffold infiltrated with perovskite and does not require a hole-conducting layer. The perovskite was produced by drop-casting a solution of PbI2, methylammonium (M…
openalex
Anyi Mei, Xiong Li, Linfeng Liu, Zhiliang Ku 等
2014-07-17
置信度 0.72
Perovskite (structure)Materials scienceHalideOxideMetal
-
Thin-film solar cells based on Methylammonium triiodideplumbate (CH3NH3PbI3) halide perovskites have recently shown remarkable performance. First-principle calculations show that CH3NH3PbI3 has unusual defect physics: (i) Different from common p-type thin-film…
openalex
Wan‐Jian Yin, Tingting Shi, Yanfa Yan
2014-02-10
置信度 0.72
Perovskite (structure)Solar cellHalideTheory of solar cellsCondensed matter physics
-
crossref
Michael Graetzel
2022-02-16T11:30:55Z
置信度 0.70
-
crossref
Youssef EL Arfaoui, Mohammed Khenfouch, Nabil Habiballah
2023-05-30T19:20:01Z
置信度 0.70
-
crossref
Ghufran S. Hashmi
2021-11-05T21:28:02Z
置信度 0.70
-
crossref
2022-04-19T17:19:53Z
置信度 0.70
-
crossref
2025-12-10T21:03:34Z
置信度 0.70
-
crossref
2022-10-17T11:43:29Z
置信度 0.70
-
crossref
Junming Li, Qiong Wang, Antonio Abate
2019-06-21T15:10:51Z
置信度 0.70
-
crossref
Seigo Ito
2016-07-21T09:23:42Z
置信度 0.70
-
crossref
2020-04-06T16:44:54Z
置信度 0.70
-
crossref
Fatima Toor
2016-10-12T17:51:00Z
置信度 0.70
-
openalex
Michael M. Thackeray
1997-01-01
置信度 0.72
ElectrolyteHalideLithium (medication)Materials scienceFast ion conductor
-
Over the past 30 years, significant commercial and academic progress has been made on Li-based battery technologies. From the early Li-metal anode iterations to the current commercial Li-ion batteries (LIBs), the story of the Li-based battery is full of breakt…
openalex
Matthew Li, Jun Lü, Zhongwei Chen, Khalil Amine
2018-06-14
置信度 0.72
Materials scienceLithium (medication)IonNanoarchitectures for lithium-ion batteriesNanotechnology
-
openalex
Nian Liu, Zhenda Lu, Jie Zhao, Matthew T. McDowell 等
2014-02-14
置信度 0.72
AnodeElectrolyteMaterials scienceFaraday efficiencySilicon
-
openalex
Chunwen Sun, Jin Liu, Yudong Gong, David P. Wilkinson 等
2017-01-26
置信度 0.72
Materials scienceElectrolyteLithium (medication)Battery (electricity)Fast ion conductor
-
Abstract The currently commercialized lithium‐ion batteries have allowed for the creation of practical electric vehicles, simultaneously satisfying many stringent milestones in energy density, lifetime, safety, power, and cost requirements of the electric vehi…
openalex
Xiaoqiao Zeng, Matthew Li, Deia Abd El‐Hady, Wael Alshitari 等
2019-06-06
置信度 0.72
CommercializationBattery (electricity)Automotive industryElectric vehicleLithium (medication)
-
openalex
A. Manuel Stephan
2005-11-08
置信度 0.72
Materials scienceElectrolyteIonic conductivityAcrylonitrilePolymer
-
openalex
Yang Lu, Chen‐Zi Zhao, Jia‐Qi Huang, Qiang Zhang
2022-06-01
置信度 0.72
Decoupling (probability)Identification (biology)Kinetic energyLithium (medication)Environmental science
-
Nanostructured silicon is promising for high capacity anodes in lithium batteries. The specific capacity of silicon is an order of magnitude higher than that of conventional graphite anodes, but the large volume change of silicon during lithiation and delithia…
openalex
Jeannine R. Szczech, Song Jin
2010-11-16
置信度 0.72
SiliconMaterials scienceAnodeNanotechnologyLithium (medication)
-
openalex
A. Robert Armstrong, Peter G. Bruce
1996-06-01
置信度 0.72
ElectrolyteLithium (medication)ElectrodeElectrochemistryCobalt
-
With the advent of flexible electronics, flexible lithium-ion batteries have attracted great attention as a promising power source in the emerging field of flexible and wearable electronic devices such as roll-up displays, touch screens, conformable active rad…
openalex
Guangmin Zhou, Feng Li, Hui–Ming Cheng
2013-11-07
置信度 0.72
ElectronicsNanoarchitectures for lithium-ion batteriesBattery (electricity)NanotechnologyLithium (medication)
-
powders were synthesized under various conditions and the performance of the cathodes was evaluated using coin cells. The samples were characterized by X-ray diffraction, scanning electron microscope observations, Brunauer, Emmett, and Teller surface area meas…
openalex
Atsuo Yamada, Sai‐Cheong Chung, Koichiro Hinokuma
2001-01-01
置信度 0.72
Lithium (medication)Scanning electron microscopeCathodeMaterials scienceLithium iron phosphate
-
Abstract Organic compounds offer new possibilities for high energy/power density, cost‐effective, environmentally friendly, and functional rechargeable lithium batteries. For a long time, they have not constituted an important class of electrode materials, par…
openalex
Yanliang Liang, Zhanliang Tao, Jun Chen
2012-05-21
置信度 0.72
Materials scienceLithium (medication)Organic radical batteryNanotechnologyEnergy density
-
crossref
B. Kumar, J. Kumar
2014-04-10T13:04:01Z
置信度 0.70
-
crossref
Joey Jung, Jiujun Zhang
2022-12-14T16:38:33Z
置信度 0.70
-
crossref
Joey Jung
2022-12-14T16:38:33Z
置信度 0.70
-
crossref
Di Zhong
2016-06-12T22:02:29Z
置信度 0.70
-
crossref
Zhirong Wang, Dongxu Ouyang, Qiong Cai
2026-02-20T11:29:16Z
置信度 0.70
-
crossref
Ruchira Dharmasena
2019-10-08T16:14:03Z
置信度 0.70
-
crossref
Joris Jaguemont
2024-05-31T17:35:40Z
置信度 0.70
-
crossref
G.M. Ehrlich, R.M. Hellen, T.B. Reddy
2002-11-22T20:21:11Z
置信度 0.70
-
crossref
Jolanta Światowska, Vadim M. Kovrugin, Philippe Barboux, Valérie Pralong
2026-07-17T10:36:54Z
置信度 0.70
-
crossref
Alexandre Chagnes
2015-06-26T17:25:14Z
置信度 0.70
-
crossref
Daniel Wesolowski, David Enos, Noah B. Schorr, Josefine McBrayer 等
2023-04-26T17:40:22Z
置信度 0.70
-
crossref
Huaibin Wang
2024-06-05T15:33:35Z
置信度 0.70
-
openalex
Yang Jin, Kai Liu, Jialiang Lang, Denys Zhuo 等
2018-06-28
置信度 0.72
ElectrolyteAnodeMaterials scienceEnergy storageMolten salt
-
Lithium-ion battery technology is one of the innovations gaining interest in utility-scale energy storage. However, there is a lack of scientific studies about its environmental performance. This study aims to evaluate the environmental impacts of lithium-ion …
openalex
Ryutaka Yudhistira, Dilip Khatiwada, Fernando Sánchez
2022-04-29
置信度 0.72
Life-cycle assessmentLead–acid batteryBattery (electricity)Environmental scienceEnergy storage
-
openalex
Anya Castillo, Dennice F. Gayme
2014-08-20
置信度 0.72
Renewable energyEnergy storageDispatchable generationGridEnvironmental economics
-
openalex
Qingqing Yong, Yanpei Tian, Xin Qian, Xiaobo Li
2022-07-21
置信度 0.72
RetrofittingEnergy storageThermal energy storageWaste managementGrid energy storage
-
Abstract In the electrical energy transformation process, the grid-level energy storage system plays an essential role in balancing power generation and utilization. Batteries have considerable potential for application to grid-level energy storage systems bec…
openalex
Tianmei Chen, Yi Jin, Hanyu Lv, Antao Yang 等
2020-02-08
置信度 0.72
Energy storageRenewable energyGridGrid energy storageBattery (electricity)
-
openalex
Xin Chang, Yuming Zhao, Boheng Yuan, Min Fan 等
2023-02-13
置信度 0.72
Energy storageRenewable energyLithium (medication)Grid energy storageElectrolyte
-
In this work we report proof-of-concept of a novel redox flow battery consisting of a solid oxide electrochemical cell (SOEC) integrated with a redox-cycle unit. The charge/discharge characteristics were explicitly observed by operating between fuel cell and e…
openalex
Nansheng Xu, Xue Li, Xuan Zhao, John B. Goodenough 等
2011-01-01
置信度 0.72
Flow batteryRedoxEnergy storageBattery (electricity)Electrolysis
-
openalex
Wei Chen, Guodong Li, Allen Pei, Yuzhang Li 等
2018-04-26
置信度 0.72
Battery (electricity)Energy storageGrid energy storageHydrogen storageAnode
-
openalex
Eric Hittinger, Jay Whitacre, Jay Apt
2012-01-06
置信度 0.72
Energy storageCapital costReliability engineeringComputer scienceProcess engineering
-
The current electric grid is an inefficient system that wastes significant amounts of the electricity it produces because there is a disconnect between the amount of energy consumers require and the amount of energy produced from generation sources. Power plan…
openalex
Matthew T Lawder, Bharatkumar Suthar, Paul W. C. Northrop, Sumitava De 等
2014-05-07
置信度 0.72
Energy storageBattery (electricity)GridComputer scienceState of charge
-
openalex
Alexandre Lucas, Stamatios Chondrogiannis
2016-02-03
置信度 0.72
Energy storageController (irrigation)Peaking power plantSmart gridFlow battery
-
The adoption of Smart Grid devices throughout utility networks will effect tremendous change in grid operations and usage of electricity over the next two decades. The changes in ways to control loads, coupled with increased penetration of renewable energy sou…
openalex
Bradford P. Roberts, C. Sandberg
2011-05-17
置信度 0.72
Software deploymentSmart gridRenewable energyGridComputer science
-
crossref
Nesimi Ertugrul
2024-09-27T12:36:33Z
置信度 0.70
-
crossref
Ahmad Arabkoohsar
2023-04-06T14:16:34Z
置信度 0.70
-
crossref
M. Barlow
2015-10-15T06:57:37Z
置信度 0.70
-
crossref
Nesimi Ertugrul
2024-09-27T12:36:33Z
置信度 0.70
-
crossref
Nesimi Ertugrul
2024-09-27T12:36:33Z
置信度 0.70
-
crossref
Bo Liu, Shaohua Yang
2026-06-26T13:13:21Z
置信度 0.70
-
crossref
2023-04-06T23:24:36Z
置信度 0.70
-
crossref
Chakib Alaoui
2017-08-31T20:51:56Z
置信度 0.70
-
crossref
2019-06-21T15:36:57Z
置信度 0.70
-
crossref
Dulin Wang, Lian Suo
2025-10-21T17:07:12Z
置信度 0.70