合成材料老化与应用, 2014, (6): 77-80.
有序介孔氧化铝制备的研究进展
刘红霞 1, , 莫文龙 2, , 邹梦 3, , 马亚亚 4,
{"currentpage":1,"firstResult":0,"maxresult":10,"pagecode":5,"pageindex":{"endPagecode":5,"startPagecode":1},"records":[{"abstractinfo":"国内对分子纳米层作为铜扩散阻挡层的研究,以及对分子纳米层性能测试的仪器和方法比较欠缺。因此,本文介绍了表征有机分子纳米层作为铜扩散阻挡层的测试方法,包括热性能测试,电学性能测试,粘接性能测试,形貌测试和分子模拟。重点介绍了粘接性能测试的方法和原理,并分析了由此技术带来的新研究方向。","authors":[{"authorName":"王亚斌","id":"22174f23-5568-4106-abb4-bd6c915d9764","originalAuthorName":"王亚斌"},{"authorName":"刘忠","id":"27a9db9c-1382-48ea-9ab3-21d4d5086bce","originalAuthorName":"刘忠"},{"authorName":"李武","id":"59725d91-22b6-41fe-91b1-22f2bc941238","originalAuthorName":"李武"},{"authorName":"董亚萍","id":"ce78d2e7-f5cb-4380-a71d-a0acdb71e787","originalAuthorName":"董亚萍"},{"authorName":"黄玉东","id":"8689f186-f4b9-47b6-8a60-ff2841a8daa5","originalAuthorName":"黄玉东"}],"doi":"10.3969/j.issn.1001-9731.2016.09.006","fpage":"9027","id":"bc2025c0-9f85-48d7-bbdc-f3eec77ea04c","issue":"9","journal":{"abbrevTitle":"GNCL","coverImgSrc":"journal/img/cover/GNCL.jpg","id":"33","issnPpub":"1001-9731","publisherId":"GNCL","title":"功能材料"},"keywords":[{"id":"766b27af-4bd3-4811-ac4c-0bb9a9bc8937","keyword":"分子纳米层","originalKeyword":"分子纳米层"},{"id":"65578a19-a60e-4fb1-bc49-6762e4d31898","keyword":"扩散阻挡层","originalKeyword":"扩散阻挡层"},{"id":"300c35ac-269d-4f7b-a4a0-ef60d110b317","keyword":"粘接层","originalKeyword":"粘接层"},{"id":"21a857cd-b6f6-40cc-841f-bd84392091a9","keyword":"铜固定化","originalKeyword":"铜固定化"}],"language":"zh","publisherId":"gncl201609006","title":"分子纳米层作为铜扩散阻挡层的研究进展(二):表征手段?","volume":"47","year":"2016"},{"abstractinfo":"随着反渗透技术在海水淡化及废水处理等方面的应用推广,反渗透膜污染问题显得越来越突出,尤其是不可逆的微生物污染,现已成为一个世界性难题.本文基于反渗透膜微生物污染的研究现状及进展,总结归纳微生物污染过程中三个关键阶段包括微生物粘附、生长和扩散的形成特点,发生机制及其影响因素;全面论述微生物污染膜的表面评价方法及膜性能评价方法如水利参数评价等的优缺点;针对微生物污染膜形成的不同生长阶段分别提出相应的防控策略如预处理、水利运行参数调控、反渗透膜的改性及清洗等;最后提出分离膜微生物污染研究的发展方向.","authors":[{"authorName":"郑猛","id":"d7380ad7-8229-4886-a4d8-c013dd9c5bf9","originalAuthorName":"郑猛"},{"authorName":"吴青芸","id":"d7b16274-8404-4908-a9bf-40f8c3e987a7","originalAuthorName":"吴青芸"},{"authorName":"周浩媛","id":"f7acdc8a-b6e9-40d3-b46d-e7676f58bea1","originalAuthorName":"周浩媛"},{"authorName":"胡云霞","id":"22741496-f171-4024-a583-1bc0c0721f8c","originalAuthorName":"胡云霞"}],"doi":"10.16159/j.cnki.issn1007-8924.2015.01.021","fpage":"123","id":"6d7adc99-261f-43a6-bfd9-1d0dc219b69c","issue":"1","journal":{"abbrevTitle":"MKXYJS","coverImgSrc":"journal/img/cover/MKXYJS.jpg","id":"54","issnPpub":"1007-8924","publisherId":"MKXYJS","title":"膜科学与技术 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"},"keywords":[{"id":"560f2e3c-75cb-43f7-bf49-804b9091eb40","keyword":"","originalKeyword":""}],"language":"zh","publisherId":"gnclyqjxb201306012","title":"Cadence以硬件验证手段加快用户SoC设计实现","volume":"19","year":"2013"},{"abstractinfo":"β-环糊精是一种应用较为广泛的生物相容性强的超分子化合物,将环糊精与分子印迹技术相结合,有助于人工合成所需要的智能型主体分子,能够有效地推动分子印迹技术的发展.首先介绍了基于β-环糊精的分子印迹技术的基本原理,并对其识别机制分别从交联剂的选择、模板分子大小以及溶剂的选择3个方面进行阐述;然后分别从电化学法、光谱法、色谱法以及静态吸附法4个方面对MI-β-CDs的选择性进行评价简介;最后对该领域的发展前景进行了展望.","authors":[{"authorName":"陆宽","id":"08cbc09c-9c66-4e10-be2a-b2584a40eeb1","originalAuthorName":"陆宽"},{"authorName":"朱秋劲","id":"0eae9118-ce85-42d6-a88f-eb945fa1ed8d","originalAuthorName":"朱秋劲"}],"doi":"","fpage":"10","id":"b02baa41-e803-4f1a-ba88-0d8778c8dbd4","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":"89fcc4b9-3567-45e1-9d70-5a5096f4491d","keyword":"分子印迹技术","originalKeyword":"分子印迹技术"},{"id":"84c967af-b16b-4dc5-be06-55373ed611c8","keyword":"β-环糊精","originalKeyword":"β-环糊精"},{"id":"78c40173-fd76-4914-ad44-eabcf56514fc","keyword":"分子识别","originalKeyword":"分子识别"},{"id":"bbaa8ac5-14e2-425d-9aa8-45569a9ba6f9","keyword":"交联剂","originalKeyword":"交联剂"},{"id":"e6aa2309-a548-4075-85c5-7521bc07cd6b","keyword":"静态吸附法","originalKeyword":"静态吸附法"}],"language":"zh","publisherId":"gncl2012z1003","title":"基于β-环糊精的分子印迹技术识别机理及评价手段","volume":"43","year":"2012"},{"abstractinfo":"简单地介绍了远离β-稳定线重质量丰中子核的合成和研究的科学意义, 报告了元素指定对远离β-稳定线重丰中子核研究的重要作用.","authors":[{"authorName":"徐岩冰","id":"a1da5785-d590-46b3-aaf6-eb6681a00c02","originalAuthorName":"徐岩冰"},{"authorName":"袁双贵","id":"89c69146-0975-43ad-850a-c131050067bb","originalAuthorName":"袁双贵"},{"authorName":"杨维凡","id":"0caaae5b-c079-4d17-9104-cb0c2ca9d41e","originalAuthorName":"杨维凡"},{"authorName":"丁华杰","id":"959b5d65-24f6-4579-a366-903eba867c73","originalAuthorName":"丁华杰"},{"authorName":"牛雁宁","id":"674a6ce9-e3dd-4264-8626-2ede29f105ec","originalAuthorName":"牛雁宁"}],"doi":"10.3969/j.issn.1007-4627.2005.01.011","fpage":"34","id":"2d4ea190-8baa-42a6-8cc2-3b16b2ebf911","issue":"1","journal":{"abbrevTitle":"YZHWLPL","coverImgSrc":"journal/img/cover/YZHWLPL.jpg","id":"78","issnPpub":"1007-4627","publisherId":"YZHWLPL","title":"原子核物理评论 "},"keywords":[{"id":"195b8c8e-c6f2-4c9a-b3a8-1429ebb370ba","keyword":"元素指定","originalKeyword":"元素指定"},{"id":"1c75f6d5-0bd0-4da8-abcc-1e8c3ebebce0","keyword":"重要作用","originalKeyword":"重要作用"},{"id":"5039f9b2-5482-46fb-aba1-cb04351bbc3d","keyword":"重丰中子核","originalKeyword":"重丰中子核"}],"language":"zh","publisherId":"yzhwlpl200501011","title":"元素指定是鉴别重丰中子核的重要手段","volume":"22","year":"2005"},{"abstractinfo":"通过构造双势垒模型以及蒙特卡洛方法的应用,成功地再现了材料的许多介电、铁电性能,这是目前国外研究电介质材料介电、铁电性能的一种有效的计算机模拟方法.将这种方法应用到具体的非晶相绝缘体中,以材料的实际结构来构造双势垒模型,得到的结果与实验相吻合.此外,该方法预期还能用以模拟界面、缺陷等等,并且极有可能发现某些目前通过试验还未被发现的现象,从而指导试验的方向.","authors":[{"authorName":"刘英","id":"53ace996-6fb3-49d9-b6af-164fd142197a","originalAuthorName":"刘英"},{"authorName":"曹晓珑","id":"ecf71342-8912-494d-97da-1d0e23aa26ea","originalAuthorName":"曹晓珑"}],"doi":"10.3969/j.issn.1009-9239.2004.04.011","fpage":"31","id":"3ed2bd90-2b30-4524-bfeb-133a224f1cdc","issue":"4","journal":{"abbrevTitle":"JYCL","coverImgSrc":"journal/img/cover/JYCL.jpg","id":"50","issnPpub":"1009-9239","publisherId":"JYCL","title":"绝缘材料"},"keywords":[{"id":"8222772b-8c08-4bdd-943d-a77763296978","keyword":"计算机模拟","originalKeyword":"计算机模拟"},{"id":"f734fe12-a90c-4fa8-b8af-9e50cb33b937","keyword":"双势垒模型","originalKeyword":"双势垒模型"},{"id":"432ed0d4-4444-4cba-8fab-bb82ff7dfd9e","keyword":"蒙特卡洛方法","originalKeyword":"蒙特卡洛方法"},{"id":"d328a61e-1d6f-45a2-a48f-1ea0d1a762da","keyword":"电介质材料","originalKeyword":"电介质材料"},{"id":"5875e2fc-1ada-4ac7-ba4c-c2f0a8af992f","keyword":"介电、铁电性能","originalKeyword":"介电、铁电性能"}],"language":"zh","publisherId":"jycltx200404011","title":"电介质材料介电、铁电性能研究的计算机模拟新手段","volume":"37","year":"2004"},{"abstractinfo":"","authors":[{"authorName":"王媛","id":"d2adc9b1-3e4e-4eea-989a-800b7615f0f0","originalAuthorName":"王媛"}],"doi":"10.3969/j.issn.1000-6826.2004.04.002","fpage":"3","id":"cb42f60b-1ebc-4221-83ca-796ebf5dd1ba","issue":"4","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":"892c5ff0-9a21-4a4d-b901-72fac6cc8f19","keyword":"","originalKeyword":""}],"language":"zh","publisherId":"jssj200404002","title":"宏观调控手段越来越明显钢铁业将向何处去","volume":"","year":"2004"}],"totalpage":3360,"totalrecord":33597}