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Silicon nitride fiber - >80% (crystalline), high purity , CAS No.12033-89-5

    Grade & Purity:
  • ≥80%
  • crystalline
In stock
Item Number
S431555
Grouped product items
SKU Size
Availability
Price Qty
S431555-10g
10g
Available within 8-12 weeks(?)
Production requires sourcing of materials. We appreciate your patience and understanding.
$364.90

Basic Description

Synonyms Silicon nitride, powder, >=99.9% trace metals basis | Silicium Nitricatum | SILICON NITRIDE [MI] | Silicon nitride, ERM(R) certified Reference Material, powder | Q413828 | Silicon nitride (Si3N4) | Silicon nitride | Silicon nitride Si3N4 GRADE B 7 (H?gan?
Specifications & Purity ≥80%, crystalline
Product Description

Application

Silicon nitride is a wide band gap material and its one dimensional nanostructures are used in microelectronics, optics applications and as reinforcements for composites.Silicon nitride nanofiber based papers have potential applications in thermal insulation systems.

Taxonomic Classification

Taxonomy Tree

Kingdom Inorganic compounds
Superclass Mixed metal/non-metal compounds
Class Metalloid organides
Subclass Metalloid nitrides
Intermediate Tree Nodes Not available
Direct Parent Metalloid nitrides
Alternative Parents Metalloid salts  Inorganic salts  Inorganic nitrides  
Molecular Framework Not available
Substituents Metalloid nitride - Inorganic nitride - Inorganic salt - Inorganic metalloid salt
Description This compound belongs to the class of inorganic compounds known as metalloid nitrides. These are inorganic compounds of nitrogen where nitrogen has a formal oxidation state of -3, and the heaviest metal atom is a metalloid.
External Descriptors Not available

Names and Identifiers

IUPAC Name 2,4,6,7-tetraza-1,3,5-trisilahexacyclo[3.1.1.01,4.02,5.03,6.03,7]heptane
INCHI InChI=1S/N4Si3/c1-5-2-6(1)3(5)7(1,2)4(5)6
InChIKey HQVNEWCFYHHQES-UHFFFAOYSA-N
Smiles N12[Si]34N5[Si]16N3[Si]25N46
Isomeric SMILES N12[Si]34N5[Si]16N3[Si]25N46
WGK Germany 3
PubChem CID 3084099
Molecular Weight 140.28

Certificates(CoA,COO,BSE/TSE and Analysis Chart)

C of A & Other Certificates(BSE/TSE, COO):
Analytical Chart:

Chemical and Physical Properties

Melt Point(°C) 1900°C
Molecular Weight 140.280 g/mol
XLogP3
Hydrogen Bond Donor Count 0
Hydrogen Bond Acceptor Count 4
Rotatable Bond Count 0
Exact Mass 139.943 Da
Monoisotopic Mass 139.943 Da
Topological Polar Surface Area 13.000 Ų
Heavy Atom Count 7
Formal Charge 0
Complexity 154.000
Isotope Atom Count 0
Defined Atom Stereocenter Count 0
Undefined Atom Stereocenter Count 0
Defined Bond Stereocenter Count 0
Undefined Bond Stereocenter Count 0
The total count of all stereochemical bonds 0
Covalently-Bonded Unit Count 1

Citations of This Product

1. Yang Wang, Wenjie Yuan, Weijian Han, Jianwei Gao, Hao Li, Tong Zhao.  (2024)  Performance of Si3N4 hollow microspheres prepared by spray drying and carbothermal reduction nitridation.  CERAMICS INTERNATIONAL,  50  (9460). 
2. Zehao Zhang, Xiang Liu, Youjun Lu, Haibo Li.  (2023)  Exploration of the lithium ions storage performance and mechanism of ZrN@reduced graphene oxide composite.  JOURNAL OF ALLOYS AND COMPOUNDS,  959  (170448). 
3. Zhou Yongjun, Zhang Yuanya, Liu Meng, Wang Yanling, Yuan Junya, Men Xuehu.  (2023)  Synergistically assembled RGO/Si3N4 whiskers hybrid aerogels to endow epoxy composites with excellent thermal and tribological performance.  Friction,  11  (11): (2091-2106). 
4. Li Wang, Fumin Lu, Xiaoman Li, Fangfang Hu, Hai Guo, Rongfei Wei.  (2023)  A novel scintillating material based on Cu+ doped borate glass.  JOURNAL OF LUMINESCENCE,  257  (119751). 
5. Chuanbo Liu, Chengqing Yuan, Shutian Liu.  (2023)  RETRACTED: The Effect of Intrinsic Mechanical Properties on Reducing the Friction-Induced Ripples of Hard-Filler-Modified HDPE.  Polymers,  15  (2): (268). 
6. Shunda Yang, Chensheng Lin, Kaichuang Chen, Huixin Fan, Jindong Chen, Shenghao Fang, Ning Ye, Min Luo.  (2022)  Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP2.  CHEMISTRY OF MATERIALS,  34  (24): (11007–11013). 
7. Xiao Ma, Zhifeng Huang, Hailong Yuan, Yujuan Zhou, Meijuan Li, Fei Chen, Qiang Shen.  (2022)  Improving white light emission and quantum yield of Ce@Eu co-doped silicate glass by reducing Eu3+ to Eu2+ with Si3N4.  JOURNAL OF THE AMERICAN CERAMIC SOCIETY,  106  (3): (1778-1788). 
8. Boshu Jiang, Bachirou Guene Lougou, Hao Zhang, Boxi Geng, Lianxuan Wu, Yong Shuai.  (2022)  Preparation and solar thermochemical properties analysis of NiFe2O4@SiC/ @Si3N4 for high-performance CO2-splitting.  APPLIED ENERGY,  328  (120057). 
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10. Ming-Chao Han, Shun-Zhong Cai, Ji Wang, Hong-Wei He.  (2022)  Single-Side Superhydrophobicity in Si3N4-Doped and SiO2-Treated Polypropylene Nonwoven Webs with Antibacterial Activity.  Polymers,  14  (14): (2952). 
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16. Nannan Zhang, Daoping Xiang.  (2021)  Self-assembling of versatile Si3N4@SiO2 nanofibre sponges by direct nitridation of photovoltaic silicon waste.  JOURNAL OF HAZARDOUS MATERIALS,  419  (126385). 
17. Rao Wei-dong, Liu Yao, Cheng Li-jing, Liu Shao-jun.  (2021)  Densification mechanism of stereolithographical dense Si3N4 ceramics with CeO2 as sintering additive by field assisted sintering.  Journal of Central South University,  28  (4): (1233-1243). 
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21. Wenguang Jiang, Xiangguo Li, Yang Lv, Dongbing Jiang, Zhuolin Liu, Chenhao He.  (2020)  Mechanical and hydration properties of low clinker cement containing high volume superfine blast furnace slag and nano silica.  CONSTRUCTION AND BUILDING MATERIALS,  238  (117683). 
22. Yong Dai, Han Guo, Linyang Chu, Zihao He, Minqi Wang, Shuhong Zhang, Xifu Shang.  (2020)  Promoting osteoblasts responses in vitro and improving osteointegration in vivo through bioactive coating of nanosilicon nitride on polyetheretherketone.  Journal of Orthopaedic Translation,  24  (198). 
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24. Yao Liu, Lina Zhan, Yu He, Jun Zhang, Jianjun Hu, Lijin Cheng, Qiumei Wu, Shaojun Liu.  (2020)  Stereolithographical fabrication of dense Si3N4 ceramics by slurry optimization and pressure sintering.  CERAMICS INTERNATIONAL,  46  (2063). 
25. Jie Zhang, Xiangcheng Li, Wei Gong, Pingan Chen, Boquan Zhu.  (2019)  First-principles simulation of the growth of in situ synthesised β-Sialon and its effects on the thermo-mechanical properties of Al2O3-C refractory composites.  JOURNAL OF THE EUROPEAN CERAMIC SOCIETY,  39  (2739). 
26. Yihuan Shi, Hui Long, Shunxiang Liu, Yuen Hong Tsang, Qiao Wen.  (2018)  Ultrasmall 2D NbSe2 based quantum dots used for low threshold ultrafast lasers.  Journal of Materials Chemistry C,  (46): (12638-12642). 
27. Wei-Ming Guo, Li-Xiang Wu, Jun-Jie Yu, Ling-Yong Zeng, Shi-Kuan Sun, Jing-Xi Li, Shang-Hua Wu, Hua-Tay Lin, Cheng-Yong Wang.  (2018)  Effect of ZrB2 content on phase assemblage and mechanical properties of Si3N4–ZrB2 ceramics prepared at low temperature.  JOURNAL OF THE AMERICAN CERAMIC SOCIETY,  101  (11): (4870-4875). 
28. Abdelaal S. A. Ahmed, Wanchun Xiang, Anna Gu, Xiaowei Hu, Ibrahim Amiinu Saana, Xiujian Zhao.  (2018)  Carbon black/silicon nitride nanocomposites as high-efficiency counter electrodes for dye-sensitized solar cells.  NEW JOURNAL OF CHEMISTRY,  42  (14): (11715-11723). 
29. Changlu Xu, Yanjie Bai, Shaofeng Yang, Huilin Yang, David A Stout, Phong A Tran, Lei Yang.  (2018)  A versatile three-dimensional foam fabrication strategy for soft and hard tissue engineering.  Biomedical Materials,  13  (2): (25018). 
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31. Tong-Mou Geng, Chang Guo, Yan-Jie Dong, Meng Chen, Yu Wang.  (2015)  Turn-on fluorogenic and chromogenic detection of cations in complete water media with poly(N-vinyl pyrrolidone) bearing rhodamine B derivatives as polymeric chemosensor.  POLYMERS FOR ADVANCED TECHNOLOGIES,  27  (1): (90-97). 
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36. Ying Li, Shuangqiang Fang, Qiangqiang Zhu, Shuxing Li, Bo Liu, Fu Feng, Rongjun Xie, Le Wang.  (2024)  Breaking Through the Luminescence Stability Bottleneck of Oxyfluoride Phosphor for Sun-Like Led Lighting.  Laser & Photonics Reviews,    (2300915). 
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41. Song Keru, Huang Siyu, Wang Jianwen, Shi Fengyue, Hu Songyu, Zhao Guangdong.  (2024)  Fabrication and investigations on Si3N4/PAN/SiZrOCN ceramic aerogel composites with high-temperature wave permeability.  JOURNAL OF MATERIALS SCIENCE,  59  (4): (1312-1326). 
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