化工进展
化工進展
화공진전
Chemical Industry and Engineering Progress
2015年
10期
3737-3745
,共9页
李娟%李保同%徐永霞%刘泽学%段久芳%韩春蕊%查显俊
李娟%李保同%徐永霞%劉澤學%段久芳%韓春蕊%查顯俊
리연%리보동%서영하%류택학%단구방%한춘예%사현준
松香基衍生物%含氮杂环%合成
鬆香基衍生物%含氮雜環%閤成
송향기연생물%함담잡배%합성
rosin based derivatives%nitrogen heterocyclic%synthesis
在松香中引入杂环,可赋予松香特殊的生物和光学等活性,而松香基含氮杂环衍生物则是在松香中引入含氮的杂环,是松香基衍生物的重要组成部分。本文以羧基改性、菲环改性和综合改性为主线,根据羧基上的还原、胺化、酰基化、缩合、闭环等反应和菲环上的氧化、亲电取代反应(溴代、选择性硝化)、重氮化、缩合和闭环等反应类型,由18位羰基酰化改性、18位烷基碳原子成环改性、18位烷基相连氮原子成环改性、11,12位碳成环改性、12,13位碳成环改性、13,14位碳成环改性和综合成环改性分类,系统综述松香基咪唑啉、噻唑、唑、呋咱、喹啉、吲哚、吖啶等含氮杂环衍生物的研究现状,详细归纳了该类衍生物的生物活性、缓蚀活性、荧光活性和表面活性的性能应用,并对松香基含氮杂环衍生物的合成和应用研究趋势进行了展望。指出该类化合物在有机金属催化材料和染料敏化太阳能电池等功能性化合物开发中具有重要发展潜力。
在鬆香中引入雜環,可賦予鬆香特殊的生物和光學等活性,而鬆香基含氮雜環衍生物則是在鬆香中引入含氮的雜環,是鬆香基衍生物的重要組成部分。本文以羧基改性、菲環改性和綜閤改性為主線,根據羧基上的還原、胺化、酰基化、縮閤、閉環等反應和菲環上的氧化、親電取代反應(溴代、選擇性硝化)、重氮化、縮閤和閉環等反應類型,由18位羰基酰化改性、18位烷基碳原子成環改性、18位烷基相連氮原子成環改性、11,12位碳成環改性、12,13位碳成環改性、13,14位碳成環改性和綜閤成環改性分類,繫統綜述鬆香基咪唑啉、噻唑、唑、呋偺、喹啉、吲哚、吖啶等含氮雜環衍生物的研究現狀,詳細歸納瞭該類衍生物的生物活性、緩蝕活性、熒光活性和錶麵活性的性能應用,併對鬆香基含氮雜環衍生物的閤成和應用研究趨勢進行瞭展望。指齣該類化閤物在有機金屬催化材料和染料敏化太暘能電池等功能性化閤物開髮中具有重要髮展潛力。
재송향중인입잡배,가부여송향특수적생물화광학등활성,이송향기함담잡배연생물칙시재송향중인입함담적잡배,시송향기연생물적중요조성부분。본문이최기개성、비배개성화종합개성위주선,근거최기상적환원、알화、선기화、축합、폐배등반응화비배상적양화、친전취대반응(추대、선택성초화)、중담화、축합화폐배등반응류형,유18위탄기선화개성、18위완기탄원자성배개성、18위완기상련담원자성배개성、11,12위탄성배개성、12,13위탄성배개성、13,14위탄성배개성화종합성배개성분류,계통종술송향기미서람、새서、서、부찰、규람、신타、아정등함담잡배연생물적연구현상,상세귀납료해류연생물적생물활성、완식활성、형광활성화표면활성적성능응용,병대송향기함담잡배연생물적합성화응용연구추세진행료전망。지출해류화합물재유궤금속최화재료화염료민화태양능전지등공능성화합물개발중구유중요발전잠력。
Rosin can be endowed with the special biological and optical activities by adding heterocyclic ring. Rosin based nitrogen heterocyclic derivatives introducing nitrogen heterocyclic ring in rosin is an important part of rosin derivatives. The progress of rosin based nitrogen heterocyclic derivatives,such as imidazoline,thiadizole,oxadiazoles,furazan,quinoline,indole,and acridine,are systematically summarized according to the modification of carboxyl,phenanthrene ring and composite. Classification is based on themodification of 18 carbonyl acylating,18 alkyl carbon atoms cyclization, 18 alkyl connected to the nitrogen atom cyclization,11,12 carbon ring formation,12,13 carbon ring formation,13,14 carbon ring formation and comprehensive cyclization according to the reaction of reduction,amination,acyl,condensation,closed loop on carboxyl and oxidation,electrophilic substitution reaction (bromine,selective nitration),diazotization,condensation and closed loop on phenanthrene ring. Not only the application of biological activity,corrosion activity,properties of fluorescence and surface activity are summarized in detail,but also the synthesis and development trends of rosin based nitrogen heterocyclic derivatives are reviewed and forecasted respectively. What is more,the development prospect of this compounds in functional areas,such as organic metal catalytic materials and dye-sensitized solar cells,is pointed out.