Indium hydroxide - PrimorTrace™, ≥99.99% metals basis , CAS No.20661-21-6

CAS: 20661-21-6 Cat. No.: I107593 Peso molecular: 165.84 Número EC: 243-947-7
Disponible para pedir
GRADE & PURITY PrimorTrace™ ? PrimorTrace™ — Aladdin's trace-metal-analysis line with ultra-low metal background. Use for ICP/AAS trace-metal work where contamination must be minimal. ≥99.99% metals basis
Synonyms
Indium(III) hydroxide | Indium trihydroxide
Storage
Argon charged,Desiccated,Room temperature
Shipped In
Normal
 ·  off list, applied to all prices below.
Size
Estado
Price
Qty
1g
I107593-1g
8-12 wks(?) Production requires sourcing of materials. We appreciate your patience and understanding.
12,90US$
5g
I107593-5g
1
46,90US$
10g
I107593-10g
2
72,90US$
25g
I107593-25g
2

112,90US$

162,90US$
Guardar 50,00 US$ (30.69%)
50g
I107593-50g
3

198,90US$

282,90US$
Guardar 84,00 US$ (29.69%)
100g
I107593-100g
2

316,90US$

507,90US$
Guardar 191,00 US$ (37.61%)
250g
I107593-250g
3

727,90US$

1.142,90US$
Guardar 415,00 US$ (36.31%)
Enter a quantity for the sizes you want to add.
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Why this grade

PrimorTrace™, ≥99.99% metals basis PrimorTrace™ for sensitive chromatographic and analytical workflows requiring minimal baseline interference.

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Storage & shipping

Argon charged,Desiccated,Room temperature Ships Normal Check lot-specific COA for exact specifications.

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Quality documents

SDS, COA, datasheet, and spec sheet available for download. Lot-specific COA accessible via lot number lookup.

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Literature proof

Cited in 18 peer-reviewed publications across chromatography, organic synthesis, and cross-coupling reactions.

Specifications

Sinónimos
Indium(III) hydroxide | Indium trihydroxide
Especificaciones y pureza
PrimorTrace™, ≥99.99% metals basis
Condiciones de almacenamiento de almacenamiento
Argon charged, Desiccated, Room temperature
Enviado en
Normal
Grado
PrimorTrace™
Pureza
≥99.99% metals basis
Nombres e identificadores
WGK Alemania 3
Peso molecular 165.84

Documentation

📋 Safety Data Sheet (SDS)

Comprehensive hazard, handling, storage, and regulatory compliance document.

Download SDS →

✅ Certificate of Analysis (COA)

Lot-specific quality data. Enter your lot number to retrieve the exact COA.

Look up COA →

📊 Datasheet

Quick-reference summary of product specifications and applications.

View datasheet →

🔬 Specification Sheet

Full quality attributes and acceptance criteria for this grade.

View spec sheet →

Advanced Data

Certificados (CoA, COO, BSE/TSE y tabla de análisis)
C of A & Other Certificates(BSE/TSE, COO):
Analytical Chart:

Find and download the COA for your product by matching the lot number on the packaging.

21 results found

Lot NumberCertificate TypeFechaArticulo
I2212001Certificate of AnalysisJun 11, 2026 I107593
I2212058Certificate of AnalysisJun 11, 2026 I107593
I2212057Certificate of AnalysisJun 11, 2026 I107593
I2212002Certificate of AnalysisJun 11, 2026 I107593
I2212056Certificate of AnalysisJun 11, 2026 I107593
I2212055Certificate of AnalysisJun 11, 2026 I107593
A2607083Certificate of AnalysisJan 09, 2026 I107593
J2126034Certificate of AnalysisAug 11, 2025 I107593
I2124237Certificate of AnalysisJul 15, 2025 I107593
I2124253Certificate of AnalysisJul 15, 2025 I107593
I2124254Certificate of AnalysisJul 15, 2025 I107593
I2124256Certificate of AnalysisJul 15, 2025 I107593
K2422342Certificate of AnalysisJun 17, 2024 I107593
E2310509Certificate of AnalysisNov 24, 2022 I107593
E2310540Certificate of AnalysisNov 24, 2022 I107593
E2310529Certificate of AnalysisNov 24, 2022 I107593
E2310518Certificate of AnalysisNov 24, 2022 I107593
I2212003Certificate of AnalysisAug 18, 2022 I107593
I2528075Certificate of AnalysisAug 18, 2022 I107593
L2402450Certificate of AnalysisAug 18, 2022 I107593
H1821032Certificate of AnalysisJun 20, 2022 I107593

Show more ⌵

Propiedades químicas y físicas
SolubilidadIt is insoluble in water.
SensibilidadLight & Moisture Sensitive
Citations of This Product
Referencias
1. Jianchun Qin, Shunyan Ning, Jianing Xu, Jishu Zeng, Zheyu He, Liang Luo, Fengtao Hu, Yimin Li, Toyohisa Fujita, Yuezhou Wei.  (2023)  Separation and recovery of indium in hazardous liquid crystal display treatment by a novel silica adsorbent: Study on adsorption mechanism and process design.  Journal of Cleaner Production,      [PMID:] [10.1016/j.jclepro.2023.138999]
2. Yuan Pan, Mengxin Liu, Chengzeng Lu, Bowen Liu, Wei Shao, Daocheng Pan, Xinan Shi.  (2023)  Ionic Liquid-Assisted Ink for Inkjet-Printed Indium Tin Oxide Transparent and Conductive Thin Films.  LANGMUIR,      [PMID:36989401] [10.1021/acs.langmuir.3c00100]
3. Xinhai Yuan, Xiongwei Wu, Xian-Xiang Zeng, Faxing Wang, Jing Wang, Yusong Zhu, Lijun Fu, Yuping Wu, Xiangfeng Duan.  (2020)  A Fully Aqueous Hybrid Electrolyte Rechargeable Battery with High Voltage and High Energy Density.  Advanced Energy Materials,  10  (40): (2001583).  [PMID:] [10.1002/aenm.202001583]
4. Xinan Shi, Lijian Huang, Daocheng Pan.  (2020)  Ionic liquid-assisted green solution approach for high-performance Cu2ZnSn(S,Se)4 thin film solar cells.  JOURNAL OF POWER SOURCES,      [PMID:] [10.1016/j.jpowsour.2020.228529]
5. Yanyan Chen, Qi Hu, Qiang Wang, Minghui Yu, Xiaoyu Gong, Shenjie Li, Jin Xiao, Yingjie Guo, Guangyu Chen, Xinyu Lai.  (2020)  Flexible translucent chitosan–glycerin/QD nanocomposite glue for anti-counterfeiting films with strong adhesion and stability.  RSC Advances,  10  (39): (23410-23416).  [PMID:35520298] [10.1039/D0RA02718A]
6. Fengyang Yu, Wangen Zhao, Shengzhong (Frank) Liu.  (2019)  A straightforward chemical approach for excellent In2S3 electron transport layer for high-efficiency perovskite solar cells.  RSC Advances,  (2): (884-890).  [PMID:35517603] [10.1039/C8RA08940J]
7. Yong Cui, Zhe Zhang, Xu Du, Wei Liu, Shi Liu, Yulin Deng, Xiaogu Huang, Gang Wang.  (2016)  Efficient hybrid solution strategy to fabricate Cu(In,Ga)(S,Se)2 solar cells.  JOURNAL OF ALLOYS AND COMPOUNDS,      [PMID:] [10.1016/j.jallcom.2016.12.070]
8. Xiaojiao Kang, Yanchun Yang, Lan Wang, Song Wei, Daocheng Pan.  (2015)  Warm White Light Emitting Diodes with Gelatin-Coated AgInS2/ZnS Core/Shell Quantum Dots.  ACS Applied Materials & Interfaces,      [PMID:26629791] [10.1021/acsami.5b10870]
9. Xiaojiao Kang, Yanchun Yang, Lijian Huang, Ying Tao, Lan Wang, Daocheng Pan.  (2015)  Large-scale synthesis of water-soluble CuInSe2/ZnS and AgInSe2/ZnS core/shell quantum dots.  GREEN CHEMISTRY,  17  (8): (4482-4488).  [PMID:] [10.1039/C5GC00908A]
10. Xiaojiao Kang, Lijian Huang, Yanchun Yang, Daocheng Pan.  (2015)  Scaling up the Aqueous Synthesis of Visible Light Emitting Multinary AgInS2/ZnS Core/Shell Quantum Dots.  Journal of Physical Chemistry C,      [PMID:] [10.1021/acs.jpcc.5b00413]
11. Kun Liu, Ke Hu, Nannan Zhang, Yujing Ling, Xianglong Guan, Taotao Xu, Angli Zhang, Jing Wang, Xiaowu Liu, Xucheng Fu.  (2024)  Design of Fe and Cu bimetallic integration into nitrogen-containing microporous graphene-like carbon via a hard-template-assisted strategy as an oxygen reduction catalyst for Al–air batteries.  NEW JOURNAL OF CHEMISTRY,  48  (27): (12153-12161).  [PMID:] [10.1039/D4NJ02336F]
12. Zecheng Cao, Xiaojiao Kang, Wei Lü, Hongcheng Wang.  (2024)  Eco-friendly fabrication and luminescent properties of flexible Ag–In–Zn–S/ZnS QD-WPU composite film.  POLYMER,      [PMID:] [10.1016/j.polymer.2024.127975]
13. Song Wei, Xiang Luo, Shaofeng Shao, Lei Zhang.  (2024)  Ionic liquid-assisted preparation of Ag–Zn–In–S quaternary quantum dot thin films and luminescence performance optimized by machine learning.  DYES AND PIGMENTS,      [PMID:] [10.1016/j.dyepig.2024.111970]
14. Xiaojiao Kang, Tianyu Gao, Wei Lü, Ming Jiang, Hongbo Zhu, Hongcheng Wang.  (2024)  Realizing efficient near-infrared emission in Cu-In-S/ZnS quantum dots: Aqueous synthesis, optical properties and applications.  COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS,      [PMID:] [10.1016/j.colsurfa.2024.134966]
15. Chen Kejun, Liu Kang, An Pengda, Li Huangjingwei, Lin Yiyang, Hu Junhua, Jia Chuankun, Fu Junwei, Li Hongmei, Liu Hui, Lin Zhang, Li Wenzhang, Li Jiahang, Lu Ying-Rui, Chan Ting-Shan, Zhang Ning, Liu Min.  (2020)  Iron phthalocyanine with coordination induced electronic localization to boost oxygen reduction reaction.  Nature Communications,  11  (1): (1-8).  [PMID:32820168] [10.1038/s41467-020-18062-y]
16. Yanyan Chen, Qi Hu, Qiang Wang, Minghui Yu, Xiaoyu Gong, Tianyong Zha, Jingying Gao, Shenjie Li.  (2019)  Direct fabrication of Cd–In–S alloy quantum dots thin films.  Materials Research Express,  (11): (115083).  [PMID:] [10.1088/2053-1591/ab4be5]
17. Lan Wang, Xiaojiao Kang, Lijian Huang, Daocheng Pan.  (2015)  Temperature-dependent photoluminescence of cadmium-free Cu–Zn–In–S quantum dot thin films as temperature probes.  DALTON TRANSACTIONS,  44  (47): (20763-20768).  [PMID:26567537] [10.1039/C5DT03821A]
18. Kuan Liu, Guixiang Liu, Bo Dai, Qiuyang Zhang, Yong Ren, Fang Xu, Junbo Wu, Wei Wang, Jiurui Yang, Yulin He.  (2026)  Effect of In3+ ion substitution on the structure and magnetic-dielectric properties of BiCaZrV-YIG ferrites sintered at low temperature.  CERAMICS INTERNATIONAL,      [PMID:] [10.1016/j.ceramint.2026.01.436]
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