This book explores the "heterojunction" as a unifying concept that bridges energy materials and information devices, redefining how structure and function interact across disciplines. Beyond a physical boundary, the heterojunction enables electronic state reconstruction, interface field regulation, and multidimensional signal coupling, driving the transition from single-material functionality to interface-governed behavior. In energy storage, engineered heterostructures between one- and two-dimensional nanomaterials achieve synergistic electron-ion transport, improving rate performance and cycling stability in sodium-ion batteries. Extended to multicomponent systems, heterojunction interfaces guide charge transfer and energy conversion through band alignment and interface coupling. In optoelectronic and thermoelectric systems, van der Waals heterointerfaces between layered semiconductors and conductive phases enable precise carrier and band control, enhancing photoresponse and thermoelectric efficiency. In neuromorphic devices, multidimensional heterojunctions integrate electrical, optical, and polarization signals to emulate synaptic plasticity and neural memory.
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Paperback. Condición: new. Paperback. This book explores the "heterojunction" as a unifying concept that bridges energy materials and information devices, redefining how structure and function interact across disciplines. Beyond a physical boundary, the heterojunction enables electronic state reconstruction, interface field regulation, and multidimensional signal coupling, driving the transition from single-material functionality to interface-governed behavior. In energy storage, engineered heterostructures between one- and two-dimensional nanomaterials achieve synergistic electron-ion transport, improving rate performance and cycling stability in sodium-ion batteries. Extended to multicomponent systems, heterojunction interfaces guide charge transfer and energy conversion through band alignment and interface coupling. In optoelectronic and thermoelectric systems, van der Waals heterointerfaces between layered semiconductors and conductive phases enable precise carrier and band control, enhancing photoresponse and thermoelectric efficiency. In neuromorphic devices, multidimensional heterojunctions integrate electrical, optical, and polarization signals to emulate synaptic plasticity and neural memory. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. Nº de ref. del artículo: 9786209139246
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Paperback. Condición: new. Paperback. This book explores the "heterojunction" as a unifying concept that bridges energy materials and information devices, redefining how structure and function interact across disciplines. Beyond a physical boundary, the heterojunction enables electronic state reconstruction, interface field regulation, and multidimensional signal coupling, driving the transition from single-material functionality to interface-governed behavior. In energy storage, engineered heterostructures between one- and two-dimensional nanomaterials achieve synergistic electron-ion transport, improving rate performance and cycling stability in sodium-ion batteries. Extended to multicomponent systems, heterojunction interfaces guide charge transfer and energy conversion through band alignment and interface coupling. In optoelectronic and thermoelectric systems, van der Waals heterointerfaces between layered semiconductors and conductive phases enable precise carrier and band control, enhancing photoresponse and thermoelectric efficiency. In neuromorphic devices, multidimensional heterojunctions integrate electrical, optical, and polarization signals to emulate synaptic plasticity and neural memory. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. Nº de ref. del artículo: 9786209139246
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Paperback. Condición: new. Paperback. This book explores the "heterojunction" as a unifying concept that bridges energy materials and information devices, redefining how structure and function interact across disciplines. Beyond a physical boundary, the heterojunction enables electronic state reconstruction, interface field regulation, and multidimensional signal coupling, driving the transition from single-material functionality to interface-governed behavior. In energy storage, engineered heterostructures between one- and two-dimensional nanomaterials achieve synergistic electron-ion transport, improving rate performance and cycling stability in sodium-ion batteries. Extended to multicomponent systems, heterojunction interfaces guide charge transfer and energy conversion through band alignment and interface coupling. In optoelectronic and thermoelectric systems, van der Waals heterointerfaces between layered semiconductors and conductive phases enable precise carrier and band control, enhancing photoresponse and thermoelectric efficiency. In neuromorphic devices, multidimensional heterojunctions integrate electrical, optical, and polarization signals to emulate synaptic plasticity and neural memory. This item is printed on demand. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability. Nº de ref. del artículo: 9786209139246
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Taschenbuch. Condición: Neu. Heterojunction - Interface Engineering for Energy Storage | Yaru Wang (u. a.) | Taschenbuch | Englisch | 2025 | Scholars' Press | EAN 9786209139246 | Verantwortliche Person für die EU: SIA OmniScriptum Publishing, Brivibas Gatve 197, 1039 RIGA, LETTLAND, customerservice[at]vdm-vsg[dot]de | Anbieter: preigu. Nº de ref. del artículo: 134270561
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Taschenbuch. Condición: Neu. This item is printed on demand - Print on Demand Titel. Neuware -This book explores the 'heterojunction' as a unifying concept that bridges energy materials and information devices, redefining how structure and function interact across disciplines. Beyond a physical boundary, the heterojunction enables electronic state reconstruction, interface field regulation, and multidimensional signal coupling, driving the transition from single-material functionality to interface-governed behavior. In energy storage, engineered heterostructures between one- and two-dimensional nanomaterials achieve synergistic electron-ion transport, improving rate performance and cycling stability in sodium-ion batteries. Extended to multicomponent systems, heterojunction interfaces guide charge transfer and energy conversion through band alignment and interface coupling. In optoelectronic and thermoelectric systems, van der Waals heterointerfaces between layered semiconductors and conductive phases enable precise carrier and band control, enhancing photoresponse and thermoelectric efficiency. In neuromorphic devices, multidimensional heterojunctions integrate electrical, optical, and polarization signals to emulate synaptic plasticity and neural memory.VDM Verlag, Dudweiler Landstraße 99, 66123 Saarbrücken 204 pp. Englisch. Nº de ref. del artículo: 9786209139246
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