Wang, Chao-Yang’s team published research in Applied Organometallic Chemistry in 2020-06-30 | CAS: 1455-77-2

Applied Organometallic Chemistry published new progress about Adsorption. 1455-77-2 belongs to class isoquinoline, name is 3,5-Diamino-1,2,4-triazole, and the molecular formula is C2H5N5, Safety of 3,5-Diamino-1,2,4-triazole.

Wang, Chao-Yang published the artcileA new one-dimensional coordination polymer synthesized from zinc and guanazole: Superior capture of organic arsenics, Safety of 3,5-Diamino-1,2,4-triazole, the main research area is coordination polymer zinc guanazole bipyridine complex preparation crystal structure; adsorption coordination polymer zinc guanazole bipyridine complex.

Organic arsenic compounds in the environment are a global threat to human health. This threat has created the urgency to develop highly efficient adsorbents with both high adsorption capacity and versatile removal of different arsenic compounds A novel 1D zinc(II) coordination polymer, formulated as Zn2(datrz)2(bpy)Cl2 (BUC-70) (datrz = guanazole, bpy = 4,4′-bipyridine), was successfully synthesized through slow evaporation at room temperature BUC-70 exhibited an excellent adsorption capacity toward p-arsanilic acid (p-ASA) and roxarsone (ROX) in water, which could be ascribed to As-O-Zn bonding interactions and strong hydrogen-bonding interactions between the organic arsenics and BUC-70. The maximum adsorption capacities toward p-ASA and ROX were 738 and 937 mg·g-1, resp. BUC-70 was effective in the removal of p-ASA and ROX at low concentrations (<5 mg·l-1) from the simulated p-ASA and ROX wastewater. Furthermore, the as-synthesized BUC-70 exhibited good adsorption property toward p-ASA and ROX in wastewater simulated by lake water and tap water. After adsorptive treatment using BUC-70, the concentrations of both p-ASA and ROX were lower than the required concentrations of the drinking water standard of the World Health Organization and the surface water standard of China. Continuous-flow, fixed-bed column experiments were performed using BUC-70 loaded on cotton as packing material to explore the potential large-scale application. Applied Organometallic Chemistry published new progress about Adsorption. 1455-77-2 belongs to class isoquinoline, name is 3,5-Diamino-1,2,4-triazole, and the molecular formula is C2H5N5, Safety of 3,5-Diamino-1,2,4-triazole.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Wang, Chao-Yang’s team published research in Applied Organometallic Chemistry in 2020-06-30 | CAS: 1455-77-2

Applied Organometallic Chemistry published new progress about Adsorption. 1455-77-2 belongs to class isoquinoline, name is 3,5-Diamino-1,2,4-triazole, and the molecular formula is C2H5N5, Application In Synthesis of 1455-77-2.

Wang, Chao-Yang published the artcileA new one-dimensional coordination polymer synthesized from zinc and guanazole: Superior capture of organic arsenics, Application In Synthesis of 1455-77-2, the main research area is coordination polymer zinc guanazole bipyridine complex preparation crystal structure; adsorption coordination polymer zinc guanazole bipyridine complex.

Organic arsenic compounds in the environment are a global threat to human health. This threat has created the urgency to develop highly efficient adsorbents with both high adsorption capacity and versatile removal of different arsenic compounds A novel 1D zinc(II) coordination polymer, formulated as Zn2(datrz)2(bpy)Cl2 (BUC-70) (datrz = guanazole, bpy = 4,4′-bipyridine), was successfully synthesized through slow evaporation at room temperature BUC-70 exhibited an excellent adsorption capacity toward p-arsanilic acid (p-ASA) and roxarsone (ROX) in water, which could be ascribed to As-O-Zn bonding interactions and strong hydrogen-bonding interactions between the organic arsenics and BUC-70. The maximum adsorption capacities toward p-ASA and ROX were 738 and 937 mg·g-1, resp. BUC-70 was effective in the removal of p-ASA and ROX at low concentrations (<5 mg·l-1) from the simulated p-ASA and ROX wastewater. Furthermore, the as-synthesized BUC-70 exhibited good adsorption property toward p-ASA and ROX in wastewater simulated by lake water and tap water. After adsorptive treatment using BUC-70, the concentrations of both p-ASA and ROX were lower than the required concentrations of the drinking water standard of the World Health Organization and the surface water standard of China. Continuous-flow, fixed-bed column experiments were performed using BUC-70 loaded on cotton as packing material to explore the potential large-scale application. Applied Organometallic Chemistry published new progress about Adsorption. 1455-77-2 belongs to class isoquinoline, name is 3,5-Diamino-1,2,4-triazole, and the molecular formula is C2H5N5, Application In Synthesis of 1455-77-2.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Liu, Chuanyao’s team published research in Journal of Materials Chemistry A: Materials for Energy and Sustainability in 2019 | CAS: 1455-77-2

Journal of Materials Chemistry A: Materials for Energy and Sustainability published new progress about Adsorption. 1455-77-2 belongs to class isoquinoline, name is 3,5-Diamino-1,2,4-triazole, and the molecular formula is C2H5N5, Category: isoquinoline.

Liu, Chuanyao published the artcilePost-synthesis of a covalent organic framework nanofiltration membrane for highly efficient water treatment, Category: isoquinoline, the main research area is covalent organic framework nanofiltration membrane water.

Nanofiltration (NF) membranes with ultrahigh water flux and high ion rejection are substantially beneficial for desalination and wastewater treatment. However, synthesis of NF membranes with high water permeance while maintaining high ion rejection remains a great challenge. Herein, we report a highly stable covalent organic framework (COF) IISERP-COOH-COF1 membrane with high ion rejection and relatively high water flux. Through post-modification, the pore aperture of the IISERP-COOH-COF1 membrane can be constricted, thus preventing ions from accessing the pores. Further, covalent post-functionalization is helpful to reduce non-selective transport through invisible intercrystalline defects, thus enhancing salt rejection. Demonstrated by both exptl. and simulation studies, the IISERP-COOH-COF1 membrane shows superior ion rejection (e.g., 96.3% for Na2SO4, 97.2% for MgSO4, 99.6% for FeCl3, 90.6% for MgCl2, and 82.9% for NaCl) based on size exclusion, with a water flux above 0.5 L m-2 h-1 bar-1.

Journal of Materials Chemistry A: Materials for Energy and Sustainability published new progress about Adsorption. 1455-77-2 belongs to class isoquinoline, name is 3,5-Diamino-1,2,4-triazole, and the molecular formula is C2H5N5, Category: isoquinoline.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Liu, Chuanyao’s team published research in Journal of Materials Chemistry A: Materials for Energy and Sustainability in 2019 | CAS: 1455-77-2

Journal of Materials Chemistry A: Materials for Energy and Sustainability published new progress about Adsorption. 1455-77-2 belongs to class isoquinoline, name is 3,5-Diamino-1,2,4-triazole, and the molecular formula is C2H5N5, Application of 3,5-Diamino-1,2,4-triazole.

Liu, Chuanyao published the artcilePost-synthesis of a covalent organic framework nanofiltration membrane for highly efficient water treatment, Application of 3,5-Diamino-1,2,4-triazole, the main research area is covalent organic framework nanofiltration membrane water.

Nanofiltration (NF) membranes with ultrahigh water flux and high ion rejection are substantially beneficial for desalination and wastewater treatment. However, synthesis of NF membranes with high water permeance while maintaining high ion rejection remains a great challenge. Herein, we report a highly stable covalent organic framework (COF) IISERP-COOH-COF1 membrane with high ion rejection and relatively high water flux. Through post-modification, the pore aperture of the IISERP-COOH-COF1 membrane can be constricted, thus preventing ions from accessing the pores. Further, covalent post-functionalization is helpful to reduce non-selective transport through invisible intercrystalline defects, thus enhancing salt rejection. Demonstrated by both exptl. and simulation studies, the IISERP-COOH-COF1 membrane shows superior ion rejection (e.g., 96.3% for Na2SO4, 97.2% for MgSO4, 99.6% for FeCl3, 90.6% for MgCl2, and 82.9% for NaCl) based on size exclusion, with a water flux above 0.5 L m-2 h-1 bar-1.

Journal of Materials Chemistry A: Materials for Energy and Sustainability published new progress about Adsorption. 1455-77-2 belongs to class isoquinoline, name is 3,5-Diamino-1,2,4-triazole, and the molecular formula is C2H5N5, Application of 3,5-Diamino-1,2,4-triazole.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Loloei, Mahsa’s team published research in Industrial & Engineering Chemistry Research in 2022-09-07 | CAS: 1455-77-2

Industrial & Engineering Chemistry Research published new progress about Adsorption. 1455-77-2 belongs to class isoquinoline, name is 3,5-Diamino-1,2,4-triazole, and the molecular formula is C2H5N5, Related Products of isoquinoline.

Loloei, Mahsa published the artcilePostsynthetic Modification of Zn/Co-ZIF by 3,5-Diamino-1,2,4-triazole for Improved MOF/Polyimide Interface in CO2-Selective Mixed Matrix Membranes, Related Products of isoquinoline, the main research area is postsynthetic diaminotriazole MOF polyimide interface CO2 matrix membrane.

Amine-functionalized zeolite imidazolate frameworks (ZIF) are known to improve the mixed matrix membranes (MMM) separation performances for CO2/CH4 applications. In this study, 3,5-diamino-1,2,4-triazole, a ligand with -NH2 functionality and uncoordinated -NH group, was used in the postsynthetic modification of dual metal Zn/Co-ZIF for partial substitution of 2-methylimidazole to obtain a biligand Zn/Co-ZIF (Zn/Co-TZ1h) with retained crystallinity, tunable pore size and enhanced CO2 adsorption capacity. A series of mixed matrix membranes were then fabricated at a single concentration (7.5 wt %) of parent Zn/Co-ZIF or Zn/Co-TZ1h in 6FDA-ODA or Matrimid polyimides to compare the effect of modified ZIF to its unmodified analog on the MMM properties and CO2/CH4 separation performance. Zn/Co-TZ1h MMM showed enhanced mech. properties and better filler integration into the polymer matrix as a result of better interfacial interactions via hydrogen bonding while retaining the same thermal stability as Zn/Co-ZIF MMM. Moreover, the combination of ZIF gate size control, improved size discrimination, and specific chem. interaction gave the NH2-functionalized Zn/Co-ZIF MMM the possibility to significantly overcome the CO2/CH4 separation performance of the pure polymer. Postsynthetic modification of ZIF by amine-functionalized ligands can be an effective strategy to improve the filler/polymer interface quality resulting in improved MMM separation properties.

Industrial & Engineering Chemistry Research published new progress about Adsorption. 1455-77-2 belongs to class isoquinoline, name is 3,5-Diamino-1,2,4-triazole, and the molecular formula is C2H5N5, Related Products of isoquinoline.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Loloei, Mahsa’s team published research in Industrial & Engineering Chemistry Research in 2022-09-07 | CAS: 1455-77-2

Industrial & Engineering Chemistry Research published new progress about Adsorption. 1455-77-2 belongs to class isoquinoline, name is 3,5-Diamino-1,2,4-triazole, and the molecular formula is C2H5N5, Related Products of isoquinoline.

Loloei, Mahsa published the artcilePostsynthetic Modification of Zn/Co-ZIF by 3,5-Diamino-1,2,4-triazole for Improved MOF/Polyimide Interface in CO2-Selective Mixed Matrix Membranes, Related Products of isoquinoline, the main research area is postsynthetic diaminotriazole MOF polyimide interface CO2 matrix membrane.

Amine-functionalized zeolite imidazolate frameworks (ZIF) are known to improve the mixed matrix membranes (MMM) separation performances for CO2/CH4 applications. In this study, 3,5-diamino-1,2,4-triazole, a ligand with -NH2 functionality and uncoordinated -NH group, was used in the postsynthetic modification of dual metal Zn/Co-ZIF for partial substitution of 2-methylimidazole to obtain a biligand Zn/Co-ZIF (Zn/Co-TZ1h) with retained crystallinity, tunable pore size and enhanced CO2 adsorption capacity. A series of mixed matrix membranes were then fabricated at a single concentration (7.5 wt %) of parent Zn/Co-ZIF or Zn/Co-TZ1h in 6FDA-ODA or Matrimid polyimides to compare the effect of modified ZIF to its unmodified analog on the MMM properties and CO2/CH4 separation performance. Zn/Co-TZ1h MMM showed enhanced mech. properties and better filler integration into the polymer matrix as a result of better interfacial interactions via hydrogen bonding while retaining the same thermal stability as Zn/Co-ZIF MMM. Moreover, the combination of ZIF gate size control, improved size discrimination, and specific chem. interaction gave the NH2-functionalized Zn/Co-ZIF MMM the possibility to significantly overcome the CO2/CH4 separation performance of the pure polymer. Postsynthetic modification of ZIF by amine-functionalized ligands can be an effective strategy to improve the filler/polymer interface quality resulting in improved MMM separation properties.

Industrial & Engineering Chemistry Research published new progress about Adsorption. 1455-77-2 belongs to class isoquinoline, name is 3,5-Diamino-1,2,4-triazole, and the molecular formula is C2H5N5, Related Products of isoquinoline.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Cao, Dan’s team published research in Sustainable Chemistry and Pharmacy in 2022-06-30 | CAS: 598-50-5

Sustainable Chemistry and Pharmacy published new progress about Adsorption. 598-50-5 belongs to class isoquinoline, name is 1-Methylurea, and the molecular formula is C2H6N2O, Related Products of isoquinoline.

Cao, Dan published the artcileAdsorption behavior of anthraquinones in deep eutectic solvent on polyester fiber and its application, Related Products of isoquinoline, the main research area is polyester fabric anthraquinone deep eutectic solvent adsorption dyeing.

Deep eutectic solvents (DESs) can be used to facilitate the adsorption of anthraquinone dyes into polyester fabrics (PETFs) in facile conditions. The adsorption mechanism was investigated through a systematic characterization study using methods including 1H NMR spectroscopy, UV-visible spectroscopy, SEM, Fourier transform IR spectroscopy, thermogravimetric anal., water contact angle anal., and tensile strength tests. It was found that anthraquinone dyes have different types of interactions with DESs, and that the adsorption and dyeing of PETF can be achieved only when the interactions between PETF and anthraquinones were stronger than those between the PETF and DESs. Addnl., the type of DES, hydrogen bond acceptor-hydrogen bond donor ratio, dye concentration, dyeing temperature, and dyeing time affect the adsorption and dyeing efficiency. In summary, PETF was successfully dyed with DES as a solvent, and the presence of DES did not destroy the PETF or significantly change its properties. Meanwhile, anthraquinone dyes affect the properties of PETF by forming non-covalent interactions. This study provides insights into problems encountered with adsorption and separation of target compounds in DESs, and provides the textile industry with a potentially much greener alternative that can reduce energy consumption and pollutant emissions, and avoid using toxic solvents for dyeing fabrics using DESs.

Sustainable Chemistry and Pharmacy published new progress about Adsorption. 598-50-5 belongs to class isoquinoline, name is 1-Methylurea, and the molecular formula is C2H6N2O, Related Products of isoquinoline.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Mahouachi, Lamia’s team published research in Chemosphere in 2020-11-30 | CAS: 117-96-4

Chemosphere published new progress about Adsorption. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Safety of Diatrizoic Acid.

Mahouachi, Lamia published the artcileNatural clay as a sorbent to remove pharmaceutical micropollutants from wastewater, Safety of Diatrizoic Acid, the main research area is diatrizoic acid iopamidol metformin removal wastewater clay sorbentpharmaceutical micropollutant; Micro-pollutants; Montmorillonite; Natural adsorbent; Removal capacity; Water treatment.

Worldwide, the aquatic environment is contaminated by micro-pollutants, such as ingredients of personal care products, pesticides and pharmaceuticals. This contamination is one of the major environmental issues of global concern. Adsorption is one of approach, which has been most extensively discussed within recent years for the reduction of the input of micro-pollutants into the environment. In the present study, the natural clay classified as Na-montmorillonite, was characterized and tested for its potential to remove four model compounds representing different polarity and ionizability: (i) diatrizoic acid (DAT), (ii) iopamidol (IOP), (iii) metformin (MTF), and (iv) carbamazepine (CBZ). The adsorption efficiency of clay was evaluated by initial compound concentration, effect of pH, contact time and temperature The results indicated that clay was able to remove the pharmaceuticals from aqueous medium with an efficiency of 70% for CBZ and MTF. In contrast, clay showed a lower removal of 30% for DAT and no removal for IOP. The results indicate that clay could rapidly and efficiently reduce the concentration of CBZ and MTF, which could provide a solution to remove some substances, without undesirable byproduct generation. However, this study clearly demonstrated that removal rates strongly depend on the compound Albeit chem. structure may play a role for the different degree of removal, this study could not completely explain the sorption mechanism between sorbent-sorbate interactions.

Chemosphere published new progress about Adsorption. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Safety of Diatrizoic Acid.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Polunin, K. E.’s team published research in Russian Journal of Physical Chemistry A in 2021-03-31 | CAS: 1455-77-2

Russian Journal of Physical Chemistry A published new progress about Adsorption. 1455-77-2 belongs to class isoquinoline, name is 3,5-Diamino-1,2,4-triazole, and the molecular formula is C2H5N5, COA of Formula: C2H5N5.

Polunin, K. E. published the artcileDetection and Neutralization of Unsymmetrical Dimethylhydrazine on the Surface of Construction Materials, COA of Formula: C2H5N5, the main research area is neutralization dimethylhydrazine construction material ozonation.

The construction materials that contacted with unsym. dimethylhydrazine and the desorption solutions obtained when treating the contaminated surface of metals and alloys with water and reagents were studied by chromatog. and mass spectrometry. Neutralization of unsym. dimethylhydrazine was studied using ozone and shungite. Ozonation makes it possible to destroy the toxicant mols. chem. and phys. adsorbed on the surface of metal constructions, due to which they can be reused and utilized. Shungite effectively adsorbs and catalytically decomposes not only unsym. dimethylhydrazine and its transformation products, but also oligomer compounds formed during the storage of hydrazine fuel. Ozonation of spent shungite can increase the efficiency of destructive processes and completeness of its regeneration.

Russian Journal of Physical Chemistry A published new progress about Adsorption. 1455-77-2 belongs to class isoquinoline, name is 3,5-Diamino-1,2,4-triazole, and the molecular formula is C2H5N5, COA of Formula: C2H5N5.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Polunin, K. E.’s team published research in Russian Journal of Physical Chemistry A in 2021-03-31 | CAS: 1455-77-2

Russian Journal of Physical Chemistry A published new progress about Adsorption. 1455-77-2 belongs to class isoquinoline, name is 3,5-Diamino-1,2,4-triazole, and the molecular formula is C2H5N5, Application of 3,5-Diamino-1,2,4-triazole.

Polunin, K. E. published the artcileDetection and Neutralization of Unsymmetrical Dimethylhydrazine on the Surface of Construction Materials, Application of 3,5-Diamino-1,2,4-triazole, the main research area is neutralization dimethylhydrazine construction material ozonation.

The construction materials that contacted with unsym. dimethylhydrazine and the desorption solutions obtained when treating the contaminated surface of metals and alloys with water and reagents were studied by chromatog. and mass spectrometry. Neutralization of unsym. dimethylhydrazine was studied using ozone and shungite. Ozonation makes it possible to destroy the toxicant mols. chem. and phys. adsorbed on the surface of metal constructions, due to which they can be reused and utilized. Shungite effectively adsorbs and catalytically decomposes not only unsym. dimethylhydrazine and its transformation products, but also oligomer compounds formed during the storage of hydrazine fuel. Ozonation of spent shungite can increase the efficiency of destructive processes and completeness of its regeneration.

Russian Journal of Physical Chemistry A published new progress about Adsorption. 1455-77-2 belongs to class isoquinoline, name is 3,5-Diamino-1,2,4-triazole, and the molecular formula is C2H5N5, Application of 3,5-Diamino-1,2,4-triazole.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem