Boron zinc hydroxide oxide (CAS 138265-88-0)

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Борат цинка (Zinc borate). CAS 138265-88-0.

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化学概述: Boron zinc hydroxide oxide (B12Zn4(OH)14O15)
分子式H₁₄B₁₂O₂₉Zn₄
分子量109.2 g/mol
SMILES[B].[OH-].[O].[Zn]
InChIKeyLJUNORKSFCLIQN-UHFFFAOYSA-M

同义词: 138265-88-0 · BORON ZINC HYDROXIDE OXIDE · BORON ZINC HYDROXIDE OXIDE (B12ZN4(OH)14O15) · RefChem:570074 · 604-070-9

数据来源: PubChem (NLM/NIH)
最后更新: 2026-09-02

科学研究

[1]CrossRef2026
Yuqing Ren, Dongdong Wen, Junlian Qiao et al.. (2026). "Efficient oxidant-free piezocatalytic remediation of antibiotic-contaminated groundwater via interfacial electric-field engineered Fe/Nv-PCN". S
[2]CrossRef2025
Leanne Noelle Strom Torgersen, Elizabeth Rebecca Noble, Torvald Fossåen Ask et al.. (2025). "Strengths and Knowledge Gaps Identified From Cybersecurity Education and Training Programs, and the Implica
[3]CrossRef2025
Jitendra Kumar Yadav, Priyanka Saini, Bharti Rani et al.. (2025). "Al2O3@LiMn2O4 nanoparticles cathodes for high-rate Li-ion batteries". Materials Letters. https://doi.org/10.1016/j.matlet.2025.138265
[4]CrossRef2025
Xiangshan Hou, Jiayao Zhu, Jingwei Li et al.. (2025). "Impact of elevated temperature on immobilization of SeO42- and CrO42- in sulfoaluminate cement matrix". Journal of Hazardous Materials. https://d
[5]CrossRef2025
Hye Duck Yeom, Jihwon Yun, Chaewon Seo et al.. (2025). "Tripterygium-derived celastrol inhibits 5-HT3A receptors via key residue interactions: A comparative electrophysiological and docking study". Ne
[6]CrossRef2025
Pimpan Leangtanom, Anurat Wisitsoraat, Narong Chanlek et al.. (2025). "Cu2O-GO/SnO2 quantum dots for selective ethylene sensing at ppm to sub-ppm levels". Sensors and Actuators B: Chemical. https://do
[7]CrossRef2025
Zhiguang Hua, Shiyuan Pan, Xianglong Li et al.. (2025). "Multi-timescale prediction of lifetime and operating temperatures of PEMFC system by hierarchical echo state network". Energy. https://doi.org/
[8]CrossRef2024
Hongsheng Wang, Hui Li, Yange Zhang et al.. (2024). "Structure and Luminescent Properties of A 3D Tb-MOF with Mixed Ligands of Terephthalate and Phthalate". Journal of Molecular Structure. https://doi
📚 科学参考文献(芝加哥作者-日期格式) 15 refs · 1 baz

MOLECULE 按CAS号参考文献(实时来自13+数据库)

来源: db:crossref (15)

  1. db:crossref Yuqing Ren, Dongdong Wen, Junlian Qiao et al.. (2026). "Efficient oxidant-free piezocatalytic remediation of antibiotic-contaminated groundwater via interfacial electric-field engineered Fe/Nv-PCN". Separation and Purification Technology. https://doi.org/10.1016/j.seppur.2026.138265
  2. db:crossref Leanne Noelle Strom Torgersen, Elizabeth Rebecca Noble, Torvald Fossåen Ask et al.. (2025). "Strengths and Knowledge Gaps Identified From Cybersecurity Education and Training Programs, and the Implications for Operational Technology Personnel in Critical Infrastructures: A Scoping Review". IEEE Access. https://doi.org/10.1109/access.2025.3594045
  3. db:crossref Jitendra Kumar Yadav, Priyanka Saini, Bharti Rani et al.. (2025). "Al2O3@LiMn2O4 nanoparticles cathodes for high-rate Li-ion batteries". Materials Letters. https://doi.org/10.1016/j.matlet.2025.138265
  4. db:crossref Xiangshan Hou, Jiayao Zhu, Jingwei Li et al.. (2025). "Impact of elevated temperature on immobilization of SeO42- and CrO42- in sulfoaluminate cement matrix". Journal of Hazardous Materials. https://doi.org/10.1016/j.jhazmat.2025.138265
  5. db:crossref Hye Duck Yeom, Jihwon Yun, Chaewon Seo et al.. (2025). "Tripterygium-derived celastrol inhibits 5-HT3A receptors via key residue interactions: A comparative electrophysiological and docking study". Neuroscience Letters. https://doi.org/10.1016/j.neulet.2025.138265
  6. db:crossref Pimpan Leangtanom, Anurat Wisitsoraat, Narong Chanlek et al.. (2025). "Cu2O-GO/SnO2 quantum dots for selective ethylene sensing at ppm to sub-ppm levels". Sensors and Actuators B: Chemical. https://doi.org/10.1016/j.snb.2025.138265
  7. db:crossref Zhiguang Hua, Shiyuan Pan, Xianglong Li et al.. (2025). "Multi-timescale prediction of lifetime and operating temperatures of PEMFC system by hierarchical echo state network". Energy. https://doi.org/10.1016/j.energy.2025.138265
  8. db:crossref Hongsheng Wang, Hui Li, Yange Zhang et al.. (2024). "Structure and Luminescent Properties of A 3D Tb-MOF with Mixed Ligands of Terephthalate and Phthalate". Journal of Molecular Structure. https://doi.org/10.1016/j.molstruc.2024.138265
  9. db:crossref Hansong Wu, Aiqin Shen, Qianqian Cheng et al.. (2023). "A review of recent developments in application of plant fibers as reinforcements in concrete". Journal of Cleaner Production. https://doi.org/10.1016/j.jclepro.2023.138265
  10. db:crossref Nelson R.F. Braga, Luiz F. Ferreira, Octavio C. Junqueira. (2023). "Configuration entropy of a rotating quark-gluon plasma from holography". Physics Letters B. https://doi.org/10.1016/j.physletb.2023.138265
  11. db:crossref Chao Meng, Weidong He, Zhen Kong et al.. (2022). "Multifunctional water-organic hybrid electrolyte for rechargeable zinc ions batteries". Chemical Engineering Journal. https://doi.org/10.1016/j.cej.2022.138265
  12. db:crossref Xinyang Zhang, Zhaofeng Chen, Junying Liu et al.. (2021). "Synthesis and characterization of ZnFe2O4 nanoparticles on infrared radiation by xerogel with sol-gel method". Chemical Physics Letters. https://doi.org/10.1016/j.cplett.2020.138265
  13. db:crossref Fangmu Qu, Magdalena Graczyk-Zajac, Dragoljub Vrankovic et al.. (2021). "Effect of morphology of C-rich silicon carbonitride ceramic on electrochemical properties of sulfur cathode for Li-S battery". Electrochimica Acta. https://doi.org/10.1016/j.electacta.2021.138265
  14. db:crossref Gnyaneshwar Dasi, R. Ramarajan, D. Paul Joseph et al.. (2020). "Enhanced UV emission of solution processed highly transparent Alq3/ZnO hybrid thin films". Thin Solid Films. https://doi.org/10.1016/j.tsf.2020.138265
  15. db:crossref Hai-Meng Zhang, De-Guang Shang, Xiao-Dong Liu et al.. (2019). "Effect of unconstraint vibration treatment on fatigue damage healing for copper film". Materials Science and Engineering: A. https://doi.org/10.1016/j.msea.2019.138265
物质监管状态
在已检查的限制清单(SVHC候选清单、REACH附件XVII;数据集不完整——这不构成合规确认)中未找到该CAS号的条目。CLP分类和运输状态(ADR):请参见GHS章节及安全数据表(SDS)。
🧪 化学数据
CAS号
138265-88-0
分子式
H₁₄B₁₂O₂₉Zn₄
摩尔质量
109.2 g/mol
SMILES
[B].[OH-].[O].[Zn]
InChIKey
LJUNORKSFCLIQN-UHFFFAOYSA-M
🔍 外部标识符
6 / 16个ID系统38%
数据库标识符操作
CAS Registry Number138265-88-0打开 →
PubChem CID156593789[1]打开 →
InChIKeyLJUNORKSFCLIQN-UHFFFAOYSA-M[1]打开 →
InChIInChI=1S/B.H2O.O.Zn/h;1H2;;/p-1[1]
SMILES[B].[OH-].[O].[Zn][1]
WikiData QIDQ81978471打开 →

来源:PubChem (NIH)、Wikidata SPARQL、KEGG、ChEMBL (EBI)、CompTox CTX (EPA)。

📚 科学参考文献(芝加哥作者-日期格式) (1 来源)
  1. PubChem. National Center for Biotechnology Information (NIH/NLM), chemical compound database. applies to: PubChem CID · InChIKey · InChI · SMILES

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Борат цинка (Zinc borate) — CAS 138265-88-0. Listed by Uts Shanghai. Prepared from the supplier’s public catalogue; not verified against their internal data.

数据来自PubChem来源: PubChem (NIH)