{"currentpage":1,"firstResult":0,"maxresult":10,"pagecode":5,"pageindex":{"endPagecode":5,"startPagecode":1},"records":[{"abstractinfo":"以八乙烯基低聚倍半硅氧烷(OVPS)为交联剂,通过溶液共聚制备了聚N-异丙基丙烯酰胺有机/无机杂化水凝胶(P(OVPS-co-NIPAM)),研究了其溶胀、消溶胀和再溶胀及药物缓释行为。结果表明,所有P(OVPS-co-NIPAM)杂化水凝胶的平衡溶胀率SR均随温度升高而降低。20℃,5-P(OVPS-co-NIPAM)杂化水凝胶在去离子水中的SR与常规水凝胶P(MBA-co-NIPAM)相同,但在生理盐水中的SR,前者明显大于后者。随着OVPS含量的增加,杂化水凝胶的SR、再溶胀和消溶胀速率均逐渐下降。5-P(OVPS-co-NIPAM)杂化水凝胶的载药率和累积释药率均高于常规水凝胶P(MBA-co-NIPAM)。此外,P(OVPS-co-NIPAM)杂化水凝胶的药物释放速率均高于常规水凝胶,而且20℃时随OVPS含量增加,释药加快。","authors":[{"authorName":"张晓静","id":"a154a2dd-4742-46dc-8ebf-48e5585d3909","originalAuthorName":"张晓静"},{"authorName":"孙家书","id":"a36ea4dd-fc17-4666-b66d-0473654fdce0","originalAuthorName":"孙家书"},{"authorName":"韩喜妞","id":"c9313c78-5b99-44b1-b0f5-572b02d37191","originalAuthorName":"韩喜妞"},{"authorName":"王超君","id":"26730c05-e57b-4902-91f0-dac3c5764110","originalAuthorName":"王超君"},{"authorName":"李亚东","id":"0c6ade2d-501a-4b23-abb5-625b04a9ea88","originalAuthorName":"李亚东"},{"authorName":"方少明","id":"48173a68-9e7d-4c24-9d90-42901f08a6c9","originalAuthorName":"方少明"}],"doi":"","fpage":"76","id":"320fa590-1d5f-4c74-b959-29ce476dd6f7","issue":"8","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":"327033c1-5007-42a9-8d34-3a3621237212","keyword":"多面体低聚倍半硅氧烷","originalKeyword":"多面体低聚倍半硅氧烷"},{"id":"d6f2445e-de17-4fbf-8f4e-d92b7ed339c6","keyword":"聚N-异丙基丙烯酰胺","originalKeyword":"聚N-异丙基丙烯酰胺"},{"id":"cd81bad1-d0a9-41a1-9773-5ba267d1b69d","keyword":"杂化水凝胶","originalKeyword":"杂化水凝胶"},{"id":"bd53f352-3f0e-47f1-a923-fb97594a97ed","keyword":"溶胀","originalKeyword":"溶胀"},{"id":"83f48076-0939-49c4-80d3-7548afbc23e2","keyword":"药物缓释","originalKeyword":"药物缓释"}],"language":"zh","publisherId":"gfzclkxygc201208019","title":"含笼形POSS的PNIPAM温敏性水凝胶的溶胀及药物缓释行为","volume":"28","year":"2012"},{"abstractinfo":"以笼形八聚(γ-氯化铵丙基)倍半硅氧烷(OCAPS)与丁二酸酐为原料进行了酰胺化反应,合成了笼形八聚(羧乙基羰氨基丙基)倍半硅氧烷(OCPS),产率约为60%,产物易溶于DMF(二甲基甲酰胺)和DMSO(二甲基亚砜)等强极性溶剂,微溶于水,不溶于THF(四氢呋喃)和氯仿等有机溶剂,经FT-IR、1 H-NMR和29Si-NMR验证了其化学结构.利用XRD和SEM研究了其聚集态结构,结果表明,OCPS为多晶结构,在本体状态下聚集为微米级的立方体块状颗粒;EDS能谱分析表明,OCPS的各组成元素比例与理论值接近;热重分析表明,OCPS在226℃和511℃有2次较大的失重,分别对应羧基的脱除和有机取代基的分解.","authors":[{"authorName":"张晓静","id":"038cc0ea-6cc3-48ac-bf42-85cfb081c9ee","originalAuthorName":"张晓静"},{"authorName":"李翀","id":"afb06a7d-1d4c-4189-b30b-2add2fd0316d","originalAuthorName":"李翀"},{"authorName":"胡跃磊","id":"4562781b-0053-48cc-8254-15029dce3bf3","originalAuthorName":"胡跃磊"},{"authorName":"王超君","id":"c08a2f66-3673-4e2d-9b29-370d1075b987","originalAuthorName":"王超君"},{"authorName":"方少明","id":"bdf196b2-74ff-449d-9b71-688fa2ce33ff","originalAuthorName":"方少明"}],"doi":"","fpage":"114","id":"b99c3162-fc31-4446-9041-ae592da93a34","issue":"2","journal":{"abbrevTitle":"CLDB","coverImgSrc":"journal/img/cover/CLDB.jpg","id":"8","issnPpub":"1005-023X","publisherId":"CLDB","title":"材料导报"},"keywords":[{"id":"a14152b1-6610-462a-b745-66f8e5b89961","keyword":"笼形倍半硅氧烷","originalKeyword":"笼形倍半硅氧烷"},{"id":"0f5545e4-52c1-428a-b7da-5d9c5d515025","keyword":"有机-无机杂化","originalKeyword":"有机-无机杂化"},{"id":"a0b2c548-8857-43bb-b162-f539e0385193","keyword":"功能材料","originalKeyword":"功能材料"}],"language":"zh","publisherId":"cldb201402029","title":"笼形八聚(羧乙基羰氨基丙基)倍半硅氧烷的合成与表征","volume":"28","year":"2014"},{"abstractinfo":"介绍了利用组态王作为监控,可编程控制器作为下位机,实现了耐火厂散料配料系统的自动化生产,该系统具有手动功能和自动功能,手动功能具有现场手动和上位机手动功能,自动功能具有全自动和半自动功能.该系统可实现配方和配料制度的任意更改,投资低,故障少,自动化程度高.","authors":[{"authorName":"胡万里","id":"1adf7690-152f-4613-8672-0f57838973f3","originalAuthorName":"胡万里"}],"doi":"10.3969/j.issn.1001-1935.2010.01.023","fpage":"79","id":"1dfe65c5-d8e0-4c0f-8675-5a16012754bd","issue":"1","journal":{"abbrevTitle":"NHCL","coverImgSrc":"journal/img/cover/NHCL.jpg","id":"55","issnPpub":"1001-1935","publisherId":"NHCL","title":"耐火材料 "},"keywords":[{"id":"c439469b-f720-48b4-9591-ac1972753d5a","keyword":"组态王","originalKeyword":"组态王"},{"id":"57ed6c1f-ef90-4357-8a60-32ade74e3327","keyword":"配料","originalKeyword":"配料"},{"id":"41435bef-3a13-40c3-9a86-acb7115813a4","keyword":"上位机","originalKeyword":"上位机"}],"language":"zh","publisherId":"nhcl201001023","title":"基于组态王的包钢耐火配料系统设计","volume":"44","year":"2010"},{"abstractinfo":"针对目前由金属开口谐振环与金属杆构成的左手材料结构存在构造比较复杂、工艺实现较难的缺点,设计实现了一种基于金属条的改进结构一”王”字型结构.通过理论分析和电磁仿真软件Ansoft HFSS 10模拟仿真,利用散射参量法提取参数结果表明该结构可以在X波段实现介电常数和磁导率同时为负.讨论研究了该左手结构的金属条宽度、中间缺口宽度、中间条宽度三个结构尺寸参数变化对谐振频率和透射峰幅值的影响,结果表明三个参数的变化都会对二者产生影响,其中金属条宽度改变对透射峰值影响幅度相对较大,缺口宽度改变对谐振频率影响幅度相对较大.","authors":[{"authorName":"孙振","id":"9082c3be-c293-4b15-909c-5363afc0fb88","originalAuthorName":"孙振"},{"authorName":"竹有章","id":"8794de66-28bc-4427-979c-0fb97ab9ed96","originalAuthorName":"竹有章"},{"authorName":"何星","id":"6f08d970-e077-44f0-b31d-5ff4c5df0ddf","originalAuthorName":"何星"},{"authorName":"杨成莱","id":"5bc766cf-c957-469f-bbec-fd1d91e6a29e","originalAuthorName":"杨成莱"},{"authorName":"李磐石","id":"5e728fff-ba05-408f-beb6-bbddd58f2624","originalAuthorName":"李磐石"}],"doi":"","fpage":"107","id":"59adf8cc-36c0-4ea6-9f45-b82068f1d277","issue":"1","journal":{"abbrevTitle":"CLKXYGCXB","coverImgSrc":"journal/img/cover/CLKXYGCXB.jpg","id":"13","issnPpub":"1673-2812","publisherId":"CLKXYGCXB","title":"材料科学与工程学报"},"keywords":[{"id":"0445fc0a-e195-44ae-af64-1760db975e7a","keyword":"金属条","originalKeyword":"金属条"},{"id":"d8320c68-3cf6-4f73-a0e7-166c6d16aebd","keyword":"左手材料","originalKeyword":"左手材料"},{"id":"ac328512-f54f-4710-8a77-4dab2151863d","keyword":"负折射率","originalKeyword":"负折射率"},{"id":"46c8a8fd-6c41-46c9-a435-b75cc3ba30f2","keyword":"谐振频率","originalKeyword":"谐振频率"},{"id":"f5aef037-2407-4220-9e53-1a929c2f3666","keyword":"S参数","originalKeyword":"S参数"}],"language":"zh","publisherId":"clkxygc201301022","title":"“王”字型左手材料结构的设计与仿真","volume":"31","year":"2013"},{"abstractinfo":"2011年9月27日,正值《材料科学与工程学报》第四届编辑委员会荣誉主任王启东先生九十华诞暨从教68周年。在此,我们向王启东先生表示最热烈的祝贺。","authors":[{"authorName":"无","id":"fa1f4c18-4b21-41fe-a5da-f75bee6fcc9f","originalAuthorName":"无"}],"doi":"","fpage":"0003","id":"2723bfaa-3a2b-477a-b3a3-34e9caa3dceb","issue":"6","journal":{"abbrevTitle":"CLKXYGCXB","coverImgSrc":"journal/img/cover/CLKXYGCXB.jpg","id":"13","issnPpub":"1673-2812","publisherId":"CLKXYGCXB","title":"材料科学与工程学报"},"keywords":[{"id":"1695bd23-b0d0-4d65-9a72-a2e0e859d3b0","keyword":"材料科学与工程","originalKeyword":"材料科学与工程"},{"id":"73611c6e-b3e7-45fe-a831-ffebce6bbf74","keyword":"编辑委员会","originalKeyword":"编辑委员会"},{"id":"318bfe79-321e-4d80-b6c7-b14714da80e6","keyword":"桃","originalKeyword":"桃"}],"language":"zh","publisherId":"clkxygc201106034","title":"寿山千寻碧,桃李几度红——热烈祝贺王启东先生九十华诞","volume":"29","year":"2011"},{"abstractinfo":"恒利铁矿是王窑矿区的一部分,该矿0-15线矿体一期开采深度在-40m以上,一期开采储量为705万t,矿石品位平均为TFe48.07%.文章针对恒利铁矿矿产资源特点,研究制定了综合开采工程技术方案,并详细进行了技术论证和经济分析,以确保该部分矿产资源能安全高效地获得回收.","authors":[{"authorName":"余斌","id":"03949a35-7e95-495a-938c-334d816d8947","originalAuthorName":"余斌"},{"authorName":"龚宇同","id":"15cd43c7-bf9f-4b1a-91f8-c8650d1ae20b","originalAuthorName":"龚宇同"},{"authorName":"谢源","id":"c21a63fe-d14d-4653-84f4-e73ad3a2a3c7","originalAuthorName":"谢源"},{"authorName":"褚志勇","id":"f7382db6-2c95-4db7-ac38-c52c53a4d90a","originalAuthorName":"褚志勇"}],"doi":"10.3969/j.issn.1000-6826.2006.03.006","fpage":"14","id":"7d738339-d21d-442d-ac57-d71f8ad722f3","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":"cbf3c134-3cf6-4029-86f0-6c35d3811582","keyword":"恒利铁矿开采","originalKeyword":"恒利铁矿开采"},{"id":"6bfaae58-4cb0-4142-b18d-24bcd93c7ba6","keyword":"方案研究","originalKeyword":"方案研究"},{"id":"0a182b87-2725-44fd-8cbc-e447518344f5","keyword":"投资估算","originalKeyword":"投资估算"},{"id":"f1fee395-db7a-4af6-a75d-356b813cdd24","keyword":"财务评价","originalKeyword":"财务评价"}],"language":"zh","publisherId":"jssj200603006","title":"王窑矿区恒利铁矿0-15线矿体安全开采技术研究","volume":"","year":"2006"},{"abstractinfo":"踏王山金矿位于海南省戈枕金矿带东南部,矿体主要产于东西向构造蚀变带中,矿石类型为蚀变岩型和石英脉型.在详细的野外地质调查基础上,对踏王山金矿床流体包裹体特征进行研究,并结合矿体产出形态特征,对流体来源以及矿床成因进行探讨.结果表明:矿区流体包裹体主要为气液两相包裹体和纯CO2包裹体,成矿流体具有中低温(均一温度为192~362℃)、中盐度(平均值为7.52%)及低密度(0.46~0.87g/cm3)的特征,成矿深度为中深环境.从包裹体成分上看,流体包裹体既有岩浆水特征(高H2O、H2含量,w(F-)/w(Cl-)≥1),又具有地下热卤水的特征(w(Na+)/w(K+)>1),明显富集Ca2+或者Ca2+含量较高的成分,显示可能为混合流体.矿床成因为岩浆热液与地下热卤水叠加的复合型中低温热液矿床.","authors":[{"authorName":"熊瑛","id":"9206db25-0760-46a1-9d07-bfba05bb6068","originalAuthorName":"熊瑛"},{"authorName":"朱自强","id":"4c01c4cc-1589-40d6-81b3-36898dafe57a","originalAuthorName":"朱自强"},{"authorName":"胡祥昭","id":"26536afa-30fc-4543-b259-95329f09de88","originalAuthorName":"胡祥昭"},{"authorName":"鲁光银","id":"b917a7c2-6764-49a3-823f-af88b9a9bf3e","originalAuthorName":"鲁光银"}],"doi":"","fpage":"1281","id":"bb0c79a2-4865-40ef-afcb-2fdc21a73843","issue":"6","journal":{"abbrevTitle":"ZGYSJSXB","coverImgSrc":"journal/img/cover/ZGYSJSXB.jpg","id":"88","issnPpub":"1004-0609","publisherId":"ZGYSJSXB","title":"中国有色金属学报"},"keywords":[{"id":"e2eb0ef2-992b-44a0-bdfc-6925da207589","keyword":"流体包裹体","originalKeyword":"流体包裹体"},{"id":"c4490cdb-1c45-4424-b6ac-10048ba4254a","keyword":"矿床成因","originalKeyword":"矿床成因"},{"id":"1c8ded80-f8cd-47d6-b9e9-3dec0ae33385","keyword":"金矿","originalKeyword":"金矿"},{"id":"a7d7b293-6843-4e66-b6ac-f5bf5acf51d3","keyword":"海南","originalKeyword":"海南"}],"language":"zh","publisherId":"zgysjsxb201606016","title":"海南省东方市踏王山金矿床流体包裹体特征及矿床成因","volu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