Modification of bismaleimide with allyl compound andN-phenylmaleimide

2001 ◽  
Vol 80 (13) ◽  
pp. 2518-2522
Author(s):  
Ma Xiaoyan ◽  
Yan Hongxia ◽  
Ning Rongchang
Keyword(s):  
2014 ◽  
Vol 2014 ◽  
pp. 1-8 ◽  
Author(s):  
Yufei Chen ◽  
Qiwang Dai ◽  
Xiwang Zhang ◽  
Tao Feng

SCE-Al2O3was the nano-Al2O3modified by supercritical ethanol and the surface of SCE-Al2O3was coated with active group. 4,4′-diaminodiphenylmethane bismaleimide (MBMI) was used as matrix; 3,3′-diallyl bisphenol A (BBA) and bisphenol-A diallyl ether (BBE) were used as reactive diluent, polyethersulfone (PES) as toughening agent, and SCE-Al2O3as modifier; SCE-Al2O3/PES-MBAE nanocomposite was prepared through in situ sol-gel method. The mechanism of composite toughened by PES was observed and analyzed. FTIR indicated that the reaction between MBMI and allyl compound occurred and SCE-Al2O3had doped into the polymer matrix. SEM showed that PES particle was inlaid in matrix and presented as a two-phase structure in matrix. The heat resistance, dielectric properties, and mechanical properties of SCE-Al2O3/PES-MBAE nanocomposites were evaluated. The results showed that with the incorporation of PES, although the toughness of the material improved, the heat resistance and dielectric properties of material declined, meanwhile. The adulteration of SCE-Al2O3could remedy the harmful effect caused by PES, while the content of SCE-Al2O3was reasonable. The decomposition temperature, dielectric constant, and dielectric loss of composite were 441.23°C, 3.63 (100 Hz), and 1.52 × 10−3(100 Hz); the bending strength and impact strength were 129.22 MPa and 13.19 kJ/mm2, respectively, when the content of SCE-Al2O3was 3 wt% and PES was 5 wt%.


In a former communication (Cook, Dodds, Hewett, and Lawson, 1934) we recorded the oestrogenic activity of a number of polycyclic aromatic and hydroaromatic compounds. The most active substances were found among a series of diols related to the carcinogenic hydro­carbon, 1 : 2 : 5 : 6-dibenzanthracene. We have now extended our investi­gation to seven new members of this series and have also examined a variety of diols of analogous structure, but containing other ring systems. Table I summarizes the results obtained in tests for oestrogenic activity carried out with 9: 10-dihydroxy-9: 10-dialkyl-9: 10-dihydro-1: 2: 5: 6- dibenzanthracenes. In none of the new compounds has the activity exceeded that of the most potent compound previously described, namely, the di- n -propyl derivative in this series. Among the straight-chain dialkyl compounds this di- n -propyl compound represents a peak of activity in a series of which the first (methyl) and higher ( n -amyl, n -hexyl) members are inactive. Two branched-chain compounds ( iso -propyl, iso -butyl) are fairly highly active, but show diminished activity by comparison with the corresponding straight-chain isomerides. This is particularly marked for the iso -propyl compound, which is about ten times less active than the n -propyl compound. In view of the high order of activity of the n -propyl compound, it is remarkable that the allyl compound has given negative results when injected into ovariectomized rats in 10 mg. doses.


2011 ◽  
Vol 30 (19) ◽  
pp. 5291-5296 ◽  
Author(s):  
Phillip Jochmann ◽  
Thomas P. Spaniol ◽  
Stephen C. Chmely ◽  
Timothy P. Hanusa ◽  
Jun Okuda

2007 ◽  
Vol 67 (11) ◽  
pp. 1181-1186 ◽  
Author(s):  
Tadashi Narita ◽  
Hirotada Fujiwara ◽  
Hiroshi Hamana
Keyword(s):  

1983 ◽  
Vol 36 (6) ◽  
pp. 1263 ◽  
Author(s):  
RFC Brown ◽  
GL Edwards ◽  
CM Jones ◽  
ID Rae ◽  
PYT Teo

An attempt to modify the previously reported synthesis of the tricyclic system (1) of mycorrhizin A (2) and gilmicolin (3) by very early introduction of a C3 side chain is described. However, both 6-(2-acetoxypropyl)-7a-methoxy-2,2-dimethylbenzofuran-4,7(2H,7aH)-dione (21) and the corresponding 6-allyl compound (24) fail to add cyclopentadiene as required for protection of the enedione system in the original scheme.


2016 ◽  
Vol 37 (1) ◽  
pp. 281-289 ◽  
Author(s):  
Kaixiang Wang ◽  
Yuanying Wang ◽  
Ping Chen ◽  
Lianlian Xia ◽  
Xuhai Xiong

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