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About This Item
Quality Level
form
crystalline (cubic (a = 5.4037)), wafer (single side polished)
does not contain
dopant
greener alternative product characteristics
Design for Energy Efficiency
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sustainability
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diam. × thickness
2 in. × 0.5 mm
matrix
Silicon base material
bp
2355 °C (lit.)
mp
1410 °C (lit.)
density
2.33 g/mL at 25 °C (lit.)
greener alternative category
semiconductor properties
<100>, N-type
SMILES string
[Si]
InChI
1S/Si
InChI key
XUIMIQQOPSSXEZ-UHFFFAOYSA-N
General description
Application
- Innovative Solutions for High-Performance Silicon Anodes in Lithium-Ion Batteries: Overcoming Challenges and Real-World Applications.: This article addresses the challenges and real-world applications of high-performance silicon anodes in lithium-ion batteries, presenting innovative solutions to enhance their efficiency (Khan et al., 2024).
- Strain Engineering: Perfecting Freestanding Perovskite Oxide Fabrication.: This research focuses on strain engineering to improve the fabrication of freestanding perovskite oxides, which are crucial for various high-purity silicon applications in academia (Yun et al., 2024).
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flash_point_f
Not applicable
flash_point_c
Not applicable
ppe
Eyeshields, Gloves, type N95 (US)
Storage Class
11 - Combustible Solids
wgk
nwg
Regulatory Listings
Regulatory Listings are mainly provided for chemical products. Only limited information can be provided here for non-chemical products. No entry means none of the components are listed. It is the user’s obligation to ensure the safe and legal use of the product.
Substances Subject to be Indicated Names
ishl_indicated
Substances Subject to be Notified Names
ishl_notified
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Protocols
Photoresist kit offers pre-weighed chemical components for lithographic processes, with separate etchants for various substrate choices.
本フォトレジストキットには、リソグラフィープロセスにおける各ステップで必要な材料が含まれています。各材料は、すぐにお使いいただけるようにあらかじめ計量されており、エッチング液については、様々な基板に適切なものをお選びいただけるように、個別に販売しています。
Articles
ALD技術による薄膜およびナノ粒子の作製法および、それらナノ材料のリチウムイオン電池、燃料電池および太陽電池への応用について概説します。
シリコン表面上の分子単分子膜の方法、その特性、分子エレクトロニクスやセンシングへの応用を探る。
光起電力デバイスの継続的な効率向上は、材料の進歩と製造技術革新によってもたらされます。
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Technical Bulletins