Применение нанопористого кремния в электронике.
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Электроника
- 12 12 страниц
- 10 + 10 источников
- Добавлена 01.11.2023
299 руб.
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- Часть работы
- Список литературы
Оглавление
1. Технология нанопористого кремния, появление и особенно-сти……………..2
2. Применение в технологиях аккумулято-ров…………………………………….6
3. Применение в фотоэлектрони-ке………………………………………………...9
4. Электрохимический иммуносенсор на основе нанопористого крем-ния…….10
Список литерату-ры………………………………………………………………..12
1. Технология нанопористого кремния, появление и особенно-сти……………..2
2. Применение в технологиях аккумулято-ров…………………………………….6
3. Применение в фотоэлектрони-ке………………………………………………...9
4. Электрохимический иммуносенсор на основе нанопористого крем-ния…….10
Список литерату-ры………………………………………………………………..12
Список литературы
1. Porous silicon membranes and their applications: Recent advances Roselien Vercauterena,∗, Gilles Scheenb, Jean-Pierre Raskina, Laurent A. Francis
2. Ionothermal Synthesis of Crystalline Nanoporous Silicon and Its Use as An-ode Materials in Lithium-Ion Batteries URL:https://d-nb.info/119733775X/34
3. Scalable synthesis of porous silicon nanoparticles from rice husk with the addition of KBr as a scavenger agent during reduction by the magnesiothermic method as anode lithium-ion batteries with sodium alginate as the binder URL: https://www.sciencedirect.com/science/article/pii/S1026918522000427
4. An Y, Fei H, Zeng G, Ci L, Xiong S, Feng J, Qian Y (2018) Green, scalable, and controllable fabrication of nanoporous silicon from commercial alloy pre-cursors for high-energy lithium-ion batteries. ACS Nano 12:4993–5002
5. Liu N, Wu H, McDowell MT, Yao Y, Wang C, Cui Y (2012) A yolk-shell de-sign for stabilized and scalable Li-ion battery alloy anodes. Nano Lett 12:3315–3321
6. Chou CY, Hwang GS (2013) Role of interface in the lithiation of silicongra-phene composites: a first principles study. J Phys Chem C 117:9598–9604
7. Broadband light absorption enhancement in nanoporous black silicon syn-thesized by aluminium-catalyzed chemical etching URL:https://www.sciencedirect.com/science/article/abs/pii/S092534672201148X
8. Effects of annealing temperature towards properties of black silicon fabricat-ed by aluminium-assisted chemical etching Mater. Sci. Semicond. Process. (2021)
9. Influence of structure geometry on THz emission from black silicon surfaces fabricated by reactive ion etching Opt Express (2017)
10. Nanoporous Silicon Based Electrochemical Immunosensor URL:https://www.ingentaconnect.com/contentone/asp/sam/2012/00000004/00000001/art00016
1. Porous silicon membranes and their applications: Recent advances Roselien Vercauterena,∗, Gilles Scheenb, Jean-Pierre Raskina, Laurent A. Francis
2. Ionothermal Synthesis of Crystalline Nanoporous Silicon and Its Use as An-ode Materials in Lithium-Ion Batteries URL:https://d-nb.info/119733775X/34
3. Scalable synthesis of porous silicon nanoparticles from rice husk with the addition of KBr as a scavenger agent during reduction by the magnesiothermic method as anode lithium-ion batteries with sodium alginate as the binder URL: https://www.sciencedirect.com/science/article/pii/S1026918522000427
4. An Y, Fei H, Zeng G, Ci L, Xiong S, Feng J, Qian Y (2018) Green, scalable, and controllable fabrication of nanoporous silicon from commercial alloy pre-cursors for high-energy lithium-ion batteries. ACS Nano 12:4993–5002
5. Liu N, Wu H, McDowell MT, Yao Y, Wang C, Cui Y (2012) A yolk-shell de-sign for stabilized and scalable Li-ion battery alloy anodes. Nano Lett 12:3315–3321
6. Chou CY, Hwang GS (2013) Role of interface in the lithiation of silicongra-phene composites: a first principles study. J Phys Chem C 117:9598–9604
7. Broadband light absorption enhancement in nanoporous black silicon syn-thesized by aluminium-catalyzed chemical etching URL:https://www.sciencedirect.com/science/article/abs/pii/S092534672201148X
8. Effects of annealing temperature towards properties of black silicon fabricat-ed by aluminium-assisted chemical etching Mater. Sci. Semicond. Process. (2021)
9. Influence of structure geometry on THz emission from black silicon surfaces fabricated by reactive ion etching Opt Express (2017)
10. Nanoporous Silicon Based Electrochemical Immunosensor URL:https://www.ingentaconnect.com/contentone/asp/sam/2012/00000004/00000001/art00016