scholarly journals TETRAACETYLGLYCOLURIL AND ITS DERIVATIVES: SYNTHESIS, PROPERTIES AND APPLICATION

Author(s):  
Abdigali A. Bakibaev ◽  
Victor S. Malkov ◽  
Sergey I. Gorbin ◽  
Ngoc Phuoc Hoang ◽  
Svetlana Yu. Panshina

Due to high multi-functionality, bicyclic ureas of octoic type (also known as glycolurils) are used in many applications, including the manufacturing of slow-release nitrogen fertilizers, additives for paints and coatings, polymer stabilizers, psychoactive drugs, intermediates for synthesize supramolecular compounds such as cucurbiturils and bambusurils and other practically important products. Among the glycoluril derivatives, N,N,N,N-tetraacetic derivative named as tetraacetylglycoluril occupies a special place and is produced as a fine chemical and used as a bleaching activator (as an example for perborates) in detergents. Tetraacetylglycoluril as a parent compound of acylated glycolurils finds its application as a bleaching activator in detergents and successfully competes with its counterpart tetraacetylethylenediamine. The chemistry of tetraacetylglycoluril presented in the literature is fragmentary and unsystematized, and does not allow receiving a deep understanding on the chemical properties and fields of application of this available compound. We suppose that the availability and multi-functionality of the tetraacetylglycoluril makes it possible to realize its synthetic potential. In the present article the main processes to produce tetraacetylglycoluril, its chemical properties and application fields are discussed in details. Chemical properties of tetraacetylglycoluril are described in details for reactions of hydrolysis, nucleophilic substitution, N- and O-acylation of amines and alcohols. It is noteworthy that tetraacetylglycoluril can be successfully used as a soft acylating agent for biogenic organic substrates and as a building block to synthesize new supramolecular compounds.

2015 ◽  
Vol 39 (10) ◽  
pp. 1421-1430 ◽  
Author(s):  
ShuMei Cai ◽  
HaiTao Zhu ◽  
JuanJuan Wang ◽  
TingYuan Yu ◽  
Xiaoqing Qian ◽  
...  

Author(s):  
Guili Ge ◽  
Lin Li ◽  
Dan Wang ◽  
Mingjian Chen ◽  
Zhaoyang Zeng ◽  
...  

Carbon dots (CDs) are a new type of carbon nanomaterial that have unique physical and chemical properties, good biocompatibility, low toxicity, easy surface functionalization, making them widely used in biological...


2017 ◽  
Vol 186 ◽  
pp. 139-146 ◽  
Author(s):  
Yanmei Li ◽  
Yanxin Sun ◽  
Shangqiang Liao ◽  
Guoyuan Zou ◽  
Tongke Zhao ◽  
...  

Agronomy ◽  
2020 ◽  
Vol 10 (10) ◽  
pp. 1549
Author(s):  
Bruno Maia Abdo Rahmen Cassim ◽  
Antonio Pedro Martins Machado ◽  
Daniel Fortune ◽  
Fernando Rodrigues Moreira ◽  
Éder Júnior De Oliveira Zampar ◽  
...  

The objective of the study was to evaluate the effect of foliar application of urea and urea-formaldehyde, triazone-based fertilizers on soybean and corn crops. Four experiments were carried out, two on soybeans, one on first season corn, and the other on second season corn. The experiments were conducted using a randomized block design, with 5 treatments studied: T1—control without application of foliar nitrogen (N); T2—foliar application of conventional urea solution and three treatments with Hexion foliar fertilizers based on urea-formaldehyde and triazone (N-Hexion®), with varying levels of N and slow-release components; T3—Hexion 1; T4—Hexion 2; and T5—Hexion 3. The foliar application of conventional urea showed no statistically significant difference in relation to the control for the yield components and grain yield for the soybean crops in seasons 2018–2019 and 2019–2020. Urea-formaldehyde/triazone treatments showed a significant increase in yield for soybeans in the 2018–2019 season compared to the control and to conventional urea. Nitrogen fertilizers with high percentages of slow-release compounds promote nitrogen release more slowly, which led to no significant increase in yield for Hexion 1. No statistical differences were observed in the corn yield for the first and second crop.


Author(s):  
G.P. Stovpchenko ◽  
L.O. Lisova ◽  
I.O. Goncharov ◽  
I.V. Gusiev

Purpose: The main task of this work was the developing of new compositions of the ESR slag that would keep the required amount of easily oxidizable elements in the superalloys and have the favourable physicochemical properties. Design/methodology/approach: Thermo-dynamic modeling was applied to estimate of oxidation effect of the slags on the Inconel 718 superalloy. Slag properties (viscosity, electrical conductivity and melting points) were measured by standard methodics. Findings: The effect of slags chemistry on the preservation of the active elements (aluminium, titanium) content in the superalloy while ESR remelting was studied. Physical properties of the several compositions of the slag are prospective for ESR of alloys with high content of active elements were measured. Research limitations/implications: The results of this work allowing development of a new compositions of the slags for ESR of the specific grades of the steel and alloys and making selection of the most effective ones. Practical implications: The obtained data make it possible to successfully select a slag for the ESR processing of the specific grades of steel and alloys in order to achieve the maximum process efficiency and the quality of the ready ingots. Originality/value: The integrated approach for the investigation of slag properties using developed thermo-dynamic model of the ESR process in the protective atmosphere gives us a deep understanding of the slag effect while melting and a resulting content of easy easily oxidizable elements in the superalloy Inconel 718.


2009 ◽  
Vol 101 (3) ◽  
pp. 607-614 ◽  
Author(s):  
A. J. Noellsch ◽  
P. P. Motavalli ◽  
K. A. Nelson ◽  
N. R. Kitchen

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