{"currentpage":1,"firstResult":0,"maxresult":10,"pagecode":5,"pageindex":{"endPagecode":5,"startPagecode":1},"records":[{"abstractinfo":"合成了一种新的有机染料1,2,4,5-四(4-吡啶乙烯基)苯1,2,4,5-tetrakis(4-pyridylvinyl)benzene(简称为:TVPB)并测试了其双光子荧光性质.溶剂缓慢挥发法得到了其反应中间体1,2,4,5-四(二甲氧基膦酰甲基)苯1,2,4,5-tetra (dimethoxyphosphorylmethyl)benzene(简称为:TDMPMB)的晶体.用X射线四圆衍射仪对晶体结构进行了解析.","authors":[{"authorName":"王蕾","id":"49477e0e-bcee-4f36-9ff4-922edf5b1297","originalAuthorName":"王蕾"},{"authorName":"陶绪堂","id":"cbc5e76f-40ee-4453-a1e6-685a2caad6b6","originalAuthorName":"陶绪堂"},{"authorName":"杨家祥","id":"a7df5854-cf6a-4e7d-95d6-0b958e88b9eb","originalAuthorName":"杨家祥"},{"authorName":"于文涛","id":"1877ba18-85f3-42b6-b5b1-36df6bc9fbc3","originalAuthorName":"于文涛"},{"authorName":"","id":"4450ed64-e2d7-4818-90ae-e94765cf956c","originalAuthorName":"任燕"},{"authorName":"辛倩","id":"67a0de00-3b81-4159-8437-e3562b3e8932","originalAuthorName":"辛倩"},{"authorName":"延云兴","id":"46a61c2c-a1fa-4277-ab56-2e6860ba4fe3","originalAuthorName":"延云兴"},{"authorName":"刘陟","id":"1ba93406-f658-405c-a1d1-725caa9f9a1a","originalAuthorName":"刘陟"},{"authorName":"蒋民华","id":"f9c27321-db22-4826-a961-63a0432464bd","originalAuthorName":"蒋民华"}],"doi":"","fpage":"212","id":"b4fd4288-7d39-49d5-8b31-a9350cabcdfa","issue":"z1","journal":{"abbrevTitle":"GNCL","coverImgSrc":"journal/img/cover/GNCL.jpg","id":"33","issnPpub":"1001-9731","publisherId":"GNCL","title":"功能材料"},"keywords":[{"id":"db1796c3-27b4-42dc-9232-9a378a31916b","keyword":"C34H26N4","originalKeyword":"C34H26N4"},{"id":"3a12ae74-7cec-42f4-b056-3097d7631f2c","keyword":"双光子吸收","originalKeyword":"双光子吸收"},{"id":"1f50d1e3-6876-4032-811e-c35f41380069","keyword":"有机染料","originalKeyword":"有机染料"}],"language":"zh","publisherId":"gncl2004z1044","title":"一种有机染料的双光子荧光性质及反应中间体的晶体结构","volume":"35","year":"2004"},{"abstractinfo":"合成了两个有机化合物: 反式-4-(N-羟乙基-N-乙基胺基)-4′-(二甲基胺基)二苯乙烯(简称DMAHAS)和反式-4-[N-(乙基4″-硝基苯甲酰基)-N-乙基胺基]-4′-(二甲基胺基)二苯乙烯(简称DMANHAS).用核磁、红外光谱以及元素分析进行了表征.测试了紫外吸收光谱、单光子荧光光谱和双光子荧光光谱.在800nm的飞秒脉冲激光的激发下,DMAHAS发出较强的蓝紫色上转换荧光, 荧光峰位于430nm.而在相同条件下DMANHAS的荧光淬灭. ","authors":[{"authorName":"延云兴","id":"fabd19e1-f605-40e1-99dd-7363b099c98d","originalAuthorName":"延云兴"},{"authorName":"王东","id":"0e73db5a-2afd-4016-bef2-b0cf4a44ecfb","originalAuthorName":"王东"},{"authorName":"程秀凤","id":"63f9c231-2a2e-4d14-a003-bee268cc3c99","originalAuthorName":"程秀凤"},{"authorName":"","id":"5cb7cea9-1d78-4397-9456-9f358b89f66b","originalAuthorName":"任燕"},{"authorName":"赵显","id":"c98f51f8-2c4b-4bef-aa95-0229fe54dd5e","originalAuthorName":"赵显"},{"authorName":"方奇","id":"57eb5372-fd8c-4f04-aa63-a4edf302295f","originalAuthorName":"方奇"},{"authorName":"蒋民华","id":"5cb9c4b8-4a4a-4fa4-a8f4-e330b8238f56","originalAuthorName":"蒋民华"}],"doi":"","fpage":"704","id":"48bc4ebb-e665-4f93-9c7b-e6b32bb7e947","issue":"6","journal":{"abbrevTitle":"GNCL","coverImgSrc":"journal/img/cover/GNCL.jpg","id":"33","issnPpub":"1001-9731","publisherId":"GNCL","title":"功能材料"},"keywords":[{"id":"2fb2c8eb-4d3f-49f8-b1f9-e0cb7a3abf73","keyword":"双光子吸收","originalKeyword":"双光子吸收"},{"id":"a5907e08-8999-4ff3-89d0-be66d2bdf08c","keyword":"合成","originalKeyword":"合成"},{"id":"1d21559a-79da-4082-ba77-784ef5aa75dd","keyword":"DMAHAS","originalKeyword":"DMAHAS"},{"id":"92c57869-0972-41bb-80cd-8ee99e8a06df","keyword":"DMANHAS","originalKeyword":"DMANHAS"}],"language":"zh","publisherId":"gncl200306035","title":"两种有机化合物DMAHAS和DMANHAS的合成、表征和非线性光学性质","volume":"34","year":"2003"},{"abstractinfo":"以聚碳酸亚丙酯多元醇(PPC)为软段,以二羟基丙酸(DMPA)为亲水扩链剂,合成水性聚氨酯(WPU)预聚体,通过氨基硅油(AEAPS)接枝改性制备了系列WPU乳液.采用红外光谱(FT-IR)、原子力显微镜(AFM)、X射线衍射(XRD)、热重分析(TGA)、接触角和耐水试验对WPU结构和性能进行表征.结果表明,纯PPC型WPU胶膜软硬段微相分离不明显,AEAPS改性胶膜软硬段微相分离明显,胶膜的结晶性随着AEAPS含量的增大而降低,胶膜耐热稳定性、耐水性和水接触角随着AEAPS含量的增大而提高.","authors":[{"authorName":"徐成书","id":"c3814a0f-4660-4390-8dcd-6f0a7d33f243","originalAuthorName":"徐成书"},{"authorName":"蔡再生","id":"31325da0-86d6-4fb2-ab7c-ffbeeef6a4f9","originalAuthorName":"蔡再生"},{"authorName":"邢建伟","id":"d7e45c83-64f4-4465-90ab-0f08cc19e766","originalAuthorName":"邢建伟"},{"authorName":"","id":"c31df98a-be4f-4746-8343-3606263dbf58","originalAuthorName":"任燕"},{"authorName":"孟娜","id":"73e0bd19-6483-4d6c-9431-1759f4decf9c","originalAuthorName":"孟娜"},{"authorName":"戈晶晶","id":"9ed50e1b-8385-4281-8b1b-84151e8a6c36","originalAuthorName":"戈晶晶"}],"doi":"","fpage":"9","id":"31cd75c7-8443-4a1e-8719-aa6cc6a976cc","issue":"4","journal":{"abbrevTitle":"GFZCLKXYGC","coverImgSrc":"journal/img/cover/GFZCLKXYGC.jpg","id":"31","issnPpub":"1000-7555","publisherId":"GFZCLKXYGC","title":"高分子材料科学与工程"},"keywords":[{"id":"90305cdc-925f-43ae-ae39-59b5fc5bf712","keyword":"氨基硅油","originalKeyword":"氨基硅油"},{"id":"02940871-91df-4e20-9fd9-ee9ed0aa21c8","keyword":"聚碳酸亚丙酯多元醇","originalKeyword":"聚碳酸亚丙酯多元醇"},{"id":"3068f23b-700e-48b1-9144-0b4803be33f6","keyword":"水性聚氨酯","originalKeyword":"水性聚氨酯"},{"id":"60e17a45-7141-41df-ac1c-acc1032516fd","keyword":"接枝","originalKeyword":"接枝"}],"language":"zh","publisherId":"gfzclkxygc201304003","title":"氨基硅油接枝聚碳酸亚丙酯水性聚氨酯的合成与性能","volume":"29","year":"2013"},{"abstractinfo":"以硬脂酸丁酯为芯材,苯乙烯马来酸酐共聚物(SMA)为乳化分散剂,采用界面聚合制备双层微胶囊相变材料,其外壳体为甲苯-2,4-二异氰酸酯(TDI)和二乙烯三胺(DETA)反应形成的聚脲壳层,内壳体为TDI与聚丙二醇2000(PPG2000)反应形成的聚氨酯壳层.采用差示扫描量热仪(DSC)、热重分析仪(TGA)、扫描电镜(SEM)、光学显微镜等分别对微胶囊的热性能、表面形态做了研究和分析.结果表明,所制备的双层微胶囊表面光滑致密,相变温度24.1℃,相变热85 J/g.所制备双层微胶囊的致密性和耐热稳定性均比单层微胶囊有很大程度的提高.","authors":[{"authorName":"陆少锋","id":"7159ddfc-5c8e-4051-b9d5-a9e751c2b5d0","originalAuthorName":"陆少锋"},{"authorName":"邢建伟","id":"7b710e14-e1c8-4bd8-863a-cb0d2fc7e3c7","originalAuthorName":"邢建伟"},{"authorName":"吴钦","id":"a1358851-161b-45b6-986c-18431c976993","originalAuthorName":"吴钦"},{"authorName":"贺江平","id":"74a3174a-5142-4200-8fbf-212362773258","originalAuthorName":"贺江平"},{"authorName":"","id":"874b4390-1e1a-4a39-be38-4607a3e64d60","originalAuthorName":"任燕"}],"doi":"","fpage":"17","id":"9b5f99bc-c757-4faf-a6f1-f6a8229d2466","issue":"1","journal":{"abbrevTitle":"GFZCLKXYGC","coverImgSrc":"journal/img/cover/GFZCLKXYGC.jpg","id":"31","issnPpub":"1000-7555","publisherId":"GFZCLKXYGC","title":"高分子材料科学与工程"},"keywords":[{"id":"77e015c4-dd1c-429d-91dd-23e8df28e2d5","keyword":"微胶囊","originalKeyword":"微胶囊"},{"id":"b20caf87-13b1-41a4-b516-24aa1551b334","keyword":"相变材料","originalKeyword":"相变材料"},{"id":"d9734a1c-49c0-48a9-859e-8dccbceacda0","keyword":"聚脲","originalKeyword":"聚脲"},{"id":"a4245be7-970a-4bcc-92f9-2bde1588970f","keyword":"硬脂酸丁酯","originalKeyword":"硬脂酸丁酯"},{"id":"090f2492-2d48-42f7-9a12-d0a33984062b","keyword":"界面聚合","originalKeyword":"界面聚合"}],"language":"zh","publisherId":"gfzclkxygc201101005","title":"界面聚合聚脲/聚氨酯双层微胶囊相变材料的研制与性能","volume":"27","year":"2011"},{"abstractinfo":"","authors":[{"authorName":"延云兴","id":"22121228-22b4-45fd-b8b2-482ef512f2b9","originalAuthorName":"延云兴"},{"authorName":"程秀凤","id":"a37e622e-b21e-4c92-92d9-baea71dce961","originalAuthorName":"程秀凤"},{"authorName":"何畏","id":"f6b5dfe3-17a0-4be8-bdf7-f62b3421b713","originalAuthorName":"何畏"},{"authorName":"","id":"fbbbf0c0-9be1-431f-a9f5-496c3ad0800c","originalAuthorName":"任燕"},{"authorName":"方奇","id":"1e97e8be-19f0-4b91-ada0-02245788fd64","originalAuthorName":"方奇"},{"authorName":"蒋民华","id":"048ca489-b35b-425c-8fbb-bd75e55f24af","originalAuthorName":"蒋民华"}],"doi":"10.3969/j.issn.1000-0518.2003.02.018","fpage":"178","id":"6690f17f-1a8d-4aa2-a6f0-a04829a3f4a9","issue":"2","journal":{"abbrevTitle":"YYHX","coverImgSrc":"journal/img/cover/YYHX.jpg","id":"73","issnPpub":"1000-0518","publisherId":"YYHX","title":"应用化学"},"keywords":[{"id":"ab0fbb5f-fb5f-4dce-bd36-0fdbcd73285a","keyword":"合成","originalKeyword":"合成"},{"id":"8689e345-d34a-40cd-932d-cb6d848a3377","keyword":"二苯乙烯衍生物","originalKeyword":"二苯乙烯衍生物"},{"id":"18f7e410-6544-4bf4-8222-b99f43ddfc84","keyword":"光学性质","originalKeyword":"光学性质"},{"id":"4a8a4852-404f-4b9a-ba9c-3f28cfb750ad","keyword":"DMAEAS","originalKeyword":"DMAEAS"}],"language":"zh","publisherId":"yyhx200302018","title":"不对称二苯乙烯衍生物DMAEAS的合成和光学性质","volume":"20","year":"2003"},{"abstractinfo":"提出了一种基于界面更新的RTM充模分析的自适应隐式控制体积法.该隐式方法的迭代方法只对已注满结点进行求解,然后更新界面结点的体积函数以便决定是否要更新界面.依据\"一时间步,一单元层\"的思想,采用最小二乘递推法估算隐式方法的时间步长,并依据压力估算每个控制体积的半注满时间,从而可以重构任何时间的流动前锋.计算表明,本文方法极大地提高了隐式方法的适用性,并把RTM充模数值模拟的计算时间复杂度降到结点数的2阶.","authors":[{"authorName":"江顺亮","id":"95ed1bcd-42f3-45cc-95b5-a168840717d4","originalAuthorName":"江顺亮"},{"authorName":"","id":"faf2b2c3-83a1-487b-aba6-e787172f877a","originalAuthorName":"任燕"},{"authorName":"梁声灼","id":"229341b9-4f7b-45dd-9306-31f5f54f9d31","originalAuthorName":"梁声灼"}],"doi":"10.3321/j.issn:1000-3851.2005.06.016","fpage":"91","id":"6a36ab0e-2865-47b3-81cf-2e49079eb3ed","issue":"6","journal":{"abbrevTitle":"FHCLXB","coverImgSrc":"journal/img/cover/FHCLXB.jpg","id":"26","issnPpub":"1000-3851","publisherId":"FHCLXB","title":"复合材料学报"},"keywords":[{"id":"dc940892-9cb5-419d-a360-f3a600488033","keyword":"RTM","originalKeyword":"RTM"},{"id":"954101b8-f301-4bc4-bb63-9fa8bbae0e39","keyword":"充模","originalKeyword":"充模"},{"id":"b9770ad0-f264-49de-ac0f-deb5ae265924","keyword":"数值模拟","originalKeyword":"数值模拟"},{"id":"7ef5cc33-2c15-45a5-b617-2cbcd7707334","keyword":"隐式方法","originalKeyword":"隐式方法"},{"id":"0ff5d719-13bc-493e-bc98-9a2d9b7a91bc","keyword":"时间步长","originalKeyword":"时间步长"}],"language":"zh","publisherId":"fhclxb200506016","title":"RTM充模过程的自适应隐式控制体积法","volume":"22","year":"2005"},{"abstractinfo":"","authors":[{"authorName":"薛发","id":"ada984ab-538b-4700-8763-72162c993391","originalAuthorName":"薛发"}],"doi":"10.3969/j.issn.1000-6826.2004.03.008","fpage":"19","id":"56c3e3b6-a4e0-482c-b694-5dfb31c87708","issue":"3","journal":{"abbrevTitle":"JSSJ","coverImgSrc":"journal/img/cover/3abe017a-2574-4821-8152-4ae974ef0471.jpg","id":"47","issnPpub":"1000-6826","publisherId":"JSSJ","title":"金属世界"},"keywords":[{"id":"b98d045d-2c17-472d-8775-c126d7844a70","keyword":"","originalKeyword":""}],"language":"zh","publisherId":"jssj200403008","title":"全面推进钢结构宅产业化","volume":"","year":"2004"},{"abstractinfo":"2012年4月6日上午,中国生物材料学会成立大会暨第一届理事会在北京航空航天大学召开。这个新的一级学会的成立标志着我国生物材料学科和产业发展的一个新的里程碑。","authors":[],"doi":"","fpage":"10","id":"c0cf6208-1aba-45d5-af99-0d02ab9e466b","issue":"5","journal":{"abbrevTitle":"ZGCLJZ","coverImgSrc":"journal/img/cover/中国材料进展.jpg","id":"80","issnPpub":"1674-3962","publisherId":"ZGCLJZ","title":"中国材料进展"},"keywords":[{"id":"e31870f0-9e4e-4438-b48a-6bb1add60d15","keyword":"材料学会","originalKeyword":"材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