🌂顶端小眼倒吸连接撑条的细丝断了,撑条散了,🌂撑不起,别的都还好。

Introducing ASP.NET - ScienceDirect
ExportChapter contentsBook contentsJavaScript is disabled on your browser. Please enable JavaScript to use all the features on this page.2002, Pages 1-33Author links open overlay panelShow moreChoose an option to locate/access this article:Check if you have access through your login credentials or your institution.ororRecommended articlesCiting articles (0)Electropolymers for (nano-)imprinted biomimetic biosensors - ScienceDirect
ExportChapter contentsBook contentsJavaScript is disabled on your browser. Please enable JavaScript to use all the features on this page.Sensing with Nanotubes, Nanowires and Nanoparticles2014, Pages 125-149Author links open overlay panelShow moreAbstract:Synthetic functional and cross-linking monomers may be electropolymerised in the presence of the target analyte to create polymers that mimic the active sites of biopolymers, e.g. antibodies, enzymes or nucleic acids. In a biomimetic sensor the molecularly imprinted polymer (MIP) must be in close proximity to the surface of the signal-generating electrode. By using electropolymerisation, thin MIP films can be obtained directly on the surface of the transducer. Integration of nanomaterials into the sensing layer has several advantages, such as increase of the surface area, mass transport and conductivity. These materials also provide a foundation for the electrochemical preparation of catalytically active MIPs.Key wordsmolecularly imprinted polymer (MIP)electropolymerisationbiomimetic sensorsnanomaterialsenzyme mimicsChoose an option to locate/access this article:Check if you have access through your login credentials or your institution.ororRecommended articlesCiting articles (0)Novel and self-healing anticorrosion coatings using rare earth compounds - ScienceDirect
ExportChapter contentsBook contentsJavaScript is disabled on your browser. Please enable JavaScript to use all the features on this page.Woodhead Publishing Series in Metals and Surface Engineering2014, Pages 233-266Author links open overlay panelShow moreAbstract:Self-healing materials have the ability to repair themselves and recover functionality after degradation, damage and failure. This chapter reviews recent developments in self-healing protective coatings which contain rare earth-based inhibiting compounds for active corrosion protection of metals. These new ‘green’ inhibitors are being developed as substitutes for chromate-based inhibitors. Different types of organic, hybrid and metallic systems are considered, with particular emphasis on thin sol-gel based layers. The main strategies for encapsulation of RE inhibitors are also reviewed. Significant future effort is required to improve the properties of organic coatings and to explore new self-healing coating alternatives that allow controlled release of the inhibitor.Key wordsself-healing coatingactive corrosion protectionsol-gel coatingencapsulationChoose an option to locate/access this article:Check if you have access through your login credentials or your institution.ororRecommended articlesCiting articles (0)& 登录/注册
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ExportChapter contentsBook contentsJavaScript is disabled on your browser. Please enable JavaScript to use all the features on this page.2013, Pages 1-18Author links open overlay panelShow moreChoose an option to locate/access this article:Check if you have access through your login credentials or your institution.ororRecommended articlesCiting articles (0)

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