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365549-33-3

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365549-33-3 Usage

General Description

(E)-5,5'-(diazene-1,2-diyl)diisophthalic acid, also known as PDA, is a versatile and important chemical compound that is used in a variety of fields such as coordination chemistry, materials science, and medicine. PDA is a rigid and planar molecule that contains two carboxylic acid groups, making it an ideal building block for the construction of coordination polymers and metal-organic frameworks. It has been studied for its potential use in sensors, drug delivery systems, and the development of new materials. PDA has also shown promising results in applications such as catalysis, photoluminescence, and gas storage. Its unique molecular structure and properties make it a valuable compound for further research and potential commercial applications in the future.

Check Digit Verification of cas no

The CAS Registry Mumber 365549-33-3 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 3,6,5,5,4 and 9 respectively; the second part has 2 digits, 3 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 365549-33:
(8*3)+(7*6)+(6*5)+(5*5)+(4*4)+(3*9)+(2*3)+(1*3)=173
173 % 10 = 3
So 365549-33-3 is a valid CAS Registry Number.

365549-33-3Downstream Products

365549-33-3Relevant articles and documents

A dual-functional luminescent Tb(III) metal-organic framework for the selective sensing of acetone and TNP in water

Goel, Nidhi,Kumar, Naresh

, p. 10746 - 10755 (2018)

Herein, a novel water-stable luminescent terbium metal-organic framework, {[Tb(L1)(L2)0.5(NO3)(DMF)]·DMF}n (TPA-MOF), with 1,10-phenanthroline (phen) and 3,3′,5,5′-azobenzene-tetracarboxylic acid (Hs

Room-Temperature Oligomeric Discotic Nematic Liquid Crystals over a Wide Temperature Range: Structure–Property Relationships

Gupta, Monika,Gupta, Santosh Prasad,Mohapatra, Subhransu Sekhar,Dhara, Surajit,Pal, Santanu Kumar

, p. 10626 - 10631 (2017)

The design and synthesis of three room-temperature discotic nematic (ND) liquid crystals (LCs) is presented. The LC consists of an azobenzene core attached to which are four pentaalkynylbenzene (PA) units through flexible alkyl spacers. The pre

The thermally induced decarboxylation mechanism of a mixed-oxidation state carboxylate-based iron metal-organic framework

Drake, Hannah F.,Day, Gregory S.,Vali, Shaik Waseem,Xiao, Zhifeng,Banerjee, Sayan,Li, Jialuo,Joseph, Elizabeth A.,Kuszynski, Jason E.,Perry, Zachary T.,Kirchon, Angelo,Ozdemir, Osman K.,Lindahl, Paul A.,Zhou, Hong-Cai

, p. 12769 - 12772 (2019)

Investigations into a thermally generated decarboxylation mechanism for metal site activation and the generation of mesopores in a carboxylate iron-based MOF, PCN-250, have been conducted. PCN-250 exhibits an interesting oxidation state change during ther

Metal-Organic Frameworks as Efficient Oral Detoxifying Agents

Rojas, Sara,Baati, Tarek,Njim, Leila,Manchego, Lisbeth,Neffati, Fadoua,Abdeljelil, Nissem,Saguem, Saad,Serre, Christian,Najjar, Mohamed Fadhel,Zakhama, Abdelfateh,Horcajada, Patricia

, p. 9581 - 9586 (2018)

Poisoning and accidental oral intoxication are major health problems worldwide. Considering the insufficient efficacy of the currently available detoxification treatments, a pioneering oral detoxifying adsorbent agent based on a single biocompatible metal

Synthetic method of pyridine heterocyclic azobenzene

-

Paragraph 0031-0035; 0041-0044, (2019/10/23)

The invention discloses a synthesis method of pyridine heterocyclic azobenzene. The method comprises the following steps: carrying out diazotization reaction on 5-aminoisophthalic acid and sodium nitrite, and performing a reaction with 1-amino-2-carboxylp

Metal-Carboxyl Helical Chain Secondary Units Supported Ion-Exchangeable Anionic Uranyl–Organic Framework

Mei, Lei,Liu, Kang,Wu, Si,Kong, Xiang-He,Hu, Kong-Qiu,Yu, Ji-Pan,Nie, Chang-Ming,Chai, Zhi-Fang,Shi, Wei-Qun

supporting information, p. 10309 - 10313 (2019/07/15)

As a less explored avenue, actinide-based metal-organic frameworks (MOFs) are worth studying for the particularity of actinide nodes in coordination behaviour and assembly modes. In this work, an azobenzenetetracarboxylate-based anionic MOF supported by u

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