高等学校化学学报
高等學校化學學報
고등학교화학학보
CHEMICAL JOURNAL OF CHINESE UNIVERSITIES
2010年
3期
577-582
,共6页
倪涛%黄光速%郑静%高品%陈猛猛
倪濤%黃光速%鄭靜%高品%陳猛猛
예도%황광속%정정%고품%진맹맹
聚丙烯酰胺凝胶%三羟甲基苯酚%计算机模拟%交联机理
聚丙烯酰胺凝膠%三羥甲基苯酚%計算機模擬%交聯機理
취병희선알응효%삼간갑기분분%계산궤모의%교련궤리
Polyacrylamide resol%Trihydroxymethylphenol%Computer simulation%Crosslinking mechanism
采用密度泛函、分子力学和分子动力学等方法从交联反应热力学、动力学等方面研究了聚丙烯酰胺/水溶性酚醛体系的交联机理.以丙酰胺(PA)和(2,4,6)-三羟甲基苯酚(THP)为模型化合物,采用密度泛函方法分别计算了体系中所有可能发生反应的吉布斯自由能和反应能垒.研究结果表明,PA/THP共缩合与THP自缩合反应在热力学上都具有自发性.其中,PA/THP邻位共缩合反应的能垒最小,仅64.54 kJ/mol,因此该反应的活性最大.构建了聚丙烯酰胺/THP体系的交联网络模型,模拟计算得到参予交联反应的-CONH_2为其总量的60%.对交联产物进行X射线光电子能谱测试,结果表明,交联产物中仲胺含量与伯胺含量之比约为1.5:1,从而证实了模拟结果.
採用密度汎函、分子力學和分子動力學等方法從交聯反應熱力學、動力學等方麵研究瞭聚丙烯酰胺/水溶性酚醛體繫的交聯機理.以丙酰胺(PA)和(2,4,6)-三羥甲基苯酚(THP)為模型化閤物,採用密度汎函方法分彆計算瞭體繫中所有可能髮生反應的吉佈斯自由能和反應能壘.研究結果錶明,PA/THP共縮閤與THP自縮閤反應在熱力學上都具有自髮性.其中,PA/THP鄰位共縮閤反應的能壘最小,僅64.54 kJ/mol,因此該反應的活性最大.構建瞭聚丙烯酰胺/THP體繫的交聯網絡模型,模擬計算得到參予交聯反應的-CONH_2為其總量的60%.對交聯產物進行X射線光電子能譜測試,結果錶明,交聯產物中仲胺含量與伯胺含量之比約為1.5:1,從而證實瞭模擬結果.
채용밀도범함、분자역학화분자동역학등방법종교련반응열역학、동역학등방면연구료취병희선알/수용성분철체계적교련궤리.이병선알(PA)화(2,4,6)-삼간갑기분분(THP)위모형화합물,채용밀도범함방법분별계산료체계중소유가능발생반응적길포사자유능화반응능루.연구결과표명,PA/THP공축합여THP자축합반응재열역학상도구유자발성.기중,PA/THP린위공축합반응적능루최소,부64.54 kJ/mol,인차해반응적활성최대.구건료취병희선알/THP체계적교련망락모형,모의계산득도삼여교련반응적-CONH_2위기총량적60%.대교련산물진행X사선광전자능보측시,결과표명,교련산물중중알함량여백알함량지비약위1.5:1,종이증실료모의결과.
The polyacrylamide gel crosslinked by the prepolymer of phenol and formaldehyde is a kind of chemical flooding agent with excellent temperature and salt resistant properties during the enhanced oil reco-very(EOR). But its cross-linking reactive mechanism is not clear for a long time. In this article, the cross-linking mechanism of polyacrylamide/resol was studied by density-functional theory, molecular mechanic and molecular dynamic methods base on computer simulation. Firstly, propionamide(PA) and 2,4,6-trihydroxy-methylphenol(THP) were looked as model compounds, Gibbs free energy(ΔG) and energy of barrier for transition states involved were calculated by density-functional theory. The results showed that both PA/THP and THP/THP condensation reactions can happen from thermodynamics, while their reaction energies of barrier are different. The energy of barrier for the ortho-position condensation reaction of PA/THP is 64.54 kJ/mol, lowest among the reactions. Secondly, base on the above conclusions, the cross-linking structure of PA/THP was constructed, and found that the reacted -CONH_2 is occupied 60% on the total -CONH_2 according to the account. At last, the crosslinked products were characterized by X-ray photoelectron spectroscopy. The results show that the validated the results of computer simulation.