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Št. zadetkov: 8
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Oznake: litij ionske baterije;elektrodni materiali;aktivni delci;kvazi 3D model;model porozne elektrode;Li-ion batteries;electrode materials;active particles;quazi 3D model;porous electrode model;
Models of Li-ion batteries addressing a particular scale—from atomistic to continuum—have reached a certain level of maturity. Meanwhile, consistent multi-scale modelling approaches are still in their infancy despite their large potential to boost the accuracy and prediction capability of Li-ion bat ...
Leto: 2022 Vir: Fakulteta za strojništvo (UL FS)
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Oznake: Li-ion battery;phase separating material;continuum model;multi-scale modelling;heat generation;thermal runaway;
Multi-scale and multi-domain mathematical models capable of modelling main electrochemical reactions, side reactions and heat generation can reduce the time and cost of lithium-ion battery development and deployment, since these processes decisively influence performance, durability and safety of ba ...
Leto: 2021 Vir: Fakulteta za strojništvo (UL FS)
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Oznake: baterije;aktivni interkalacijski delec;difuzija;model transmisijske linije;batteries;active intercalating particles;diffusion;transmission line model;
The transmission line model (TLM) is a powerful tool to describe different physicochemical processes and therefore frequently used for the simulation of battery and fuel cell performance. Despite the fact that TLMs exhibit spatial resolution, there still are challenges when applying TLMs to realisti ...
Leto: 2024 Vir: Fakulteta za strojništvo (UL FS)
Izvirni znanstveni članek
Oznake: litij ionske baterije;elektrodni materiali;aktivni delci;kvazi 3D model;model porozne elektrode;li-ion batteries;electrode materials;aktive particle;quazi 3D model;porous electrode model;
We unreveal mechanistic background of the presence of chemical inductive effects in phase separating ion intercalation energy storage materials, in particular lithium iron phosphate (LFP) and lithium titanate oxide (LTO), by applying a detailed phase field model. These materials feature fast (de)int ...
Leto: 2023 Vir: Fakulteta za strojništvo (UL FS)
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Oznake: fuel cells;PEMFC;modelling;educational approach;scale-bridging;
The use of hydrogen fuel cells as a mobile source of electricity could prove key to the future decarbonisation of heavy-duty road and marine transportation. Due to the complex interplay of various physicochemical processes in fuel cells, further development of these devices will depend on concerted ...
Leto: 2023 Vir: Fakulteta za strojništvo (UL FS)
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Oznake: batteries;Li-Ion;porous electrode models;electrodes topology;NCM;LFP;memory effect;
The paper proposes an advanced continuum level modelling framework characterized by a more consistent virtual representation of electrode topology to enhance prediction capability and generality of porous electrode theory based models. The proposed modelling framework, therefore, establishes the mis ...
Leto: 2020 Vir: Fakulteta za strojništvo (UL FS)
Izvirni znanstveni članek
Oznake: Li-ion battery;phase separating material;multi-particle porous electrode;memory effect;
Phase separating Li-ion battery cell cathode materials feature a well-known phenomenon called the memory effect. It manifests itself as an abnormal change in working voltage being dependent on cell cycling history. It was only recently that plausible mechanistic reasoning of the memory effect in Li- ...
Leto: 2019 Vir: Fakulteta za strojništvo (UL FS)
Izvirni znanstveni članek
Oznake: battery;phase-separating materials;Lithium iron phosphate;voltage hysteresis;intraparticle phase-separated;
Hysteresis is a general phenomenon regularly observed in various materials. Usually, hysteretic behavior is an intrinsic property that cannot be circumvented in the non-equilibrium operation of the system. Herein, we show that, at least with regard to the hysteretic behavior of phase-separating batt ...
Leto: 2023 Vir: Kemijski inštitut (KI)
Št. zadetkov: 8
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