Antislime Coatings. Part III. Antislime Organometallic Polymers of Optical Quality
Organometallic polymers of optical quality have been prepared by various synthetic methods. The antisliming and antifouling performance of these polymers has been determined by clinical antibacterial assay and tropical field exposure trials. For the first time organometallic monomers have been copol...
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creator | Montemarano, J A Dyckman, E J |
description | Organometallic polymers of optical quality have been prepared by various synthetic methods. The antisliming and antifouling performance of these polymers has been determined by clinical antibacterial assay and tropical field exposure trials. For the first time organometallic monomers have been copolymerized with fluoromonomers in an attempt to couple the antisliming and nonwetting characteristics of each into an optical material for underwater use. (Author-PL) |
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Antislime Organometallic Polymers of Optical Quality</title><source>DTIC Technical Reports</source><creator>Montemarano, J A ; Dyckman, E J</creator><creatorcontrib>Montemarano, J A ; Dyckman, E J ; DAVID W TAYLOR NAVAL SHIP RESEARCH AND DEVELOPMENT CENTER ANNAPOLIS MD</creatorcontrib><description>Organometallic polymers of optical quality have been prepared by various synthetic methods. The antisliming and antifouling performance of these polymers has been determined by clinical antibacterial assay and tropical field exposure trials. For the first time organometallic monomers have been copolymerized with fluoromonomers in an attempt to couple the antisliming and nonwetting characteristics of each into an optical material for underwater use. (Author-PL)</description><language>eng</language><subject>ACRYLIC RESINS ; ANTIFOULING COATINGS ; ANTISLIME COATINGS ; BACTERIA ; Coatings, Colorants and Finishes ; COPOLYMERIZATION ; COUNTERMEASURES ; ENVIRONMENTAL TESTS ; FLUORINE COMPOUNDS ; HALOGENATED HYDROCARBONS ; HYDROCARBONS ; LIGHT TRANSMISSION ; OPTICAL COATINGS ; OPTICAL EQUIPMENT ; OPTICAL MATERIALS ; ORGANOMETALLIC COMPOUNDS ; POLYMERIZATION ; SURFACE ACTIVE SUBSTANCES ; SURFACE PROPERTIES ; SYNTHESIS(CHEMISTRY) ; TIN COMPOUNDS ; WETTING</subject><creationdate>1972</creationdate><rights>APPROVED FOR PUBLIC RELEASE</rights><oa>free_for_read</oa><woscitedreferencessubscribed>false</woscitedreferencessubscribed></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>230,780,885,27567,27568</link.rule.ids><linktorsrc>$$Uhttps://apps.dtic.mil/sti/citations/AD0903592$$EView_record_in_DTIC$$FView_record_in_$$GDTIC$$Hfree_for_read</linktorsrc></links><search><creatorcontrib>Montemarano, J A</creatorcontrib><creatorcontrib>Dyckman, E J</creatorcontrib><creatorcontrib>DAVID W TAYLOR NAVAL SHIP RESEARCH AND DEVELOPMENT CENTER ANNAPOLIS MD</creatorcontrib><title>Antislime Coatings. Part III. Antislime Organometallic Polymers of Optical Quality</title><description>Organometallic polymers of optical quality have been prepared by various synthetic methods. The antisliming and antifouling performance of these polymers has been determined by clinical antibacterial assay and tropical field exposure trials. For the first time organometallic monomers have been copolymerized with fluoromonomers in an attempt to couple the antisliming and nonwetting characteristics of each into an optical material for underwater use. (Author-PL)</description><subject>ACRYLIC RESINS</subject><subject>ANTIFOULING COATINGS</subject><subject>ANTISLIME COATINGS</subject><subject>BACTERIA</subject><subject>Coatings, Colorants and Finishes</subject><subject>COPOLYMERIZATION</subject><subject>COUNTERMEASURES</subject><subject>ENVIRONMENTAL TESTS</subject><subject>FLUORINE COMPOUNDS</subject><subject>HALOGENATED HYDROCARBONS</subject><subject>HYDROCARBONS</subject><subject>LIGHT TRANSMISSION</subject><subject>OPTICAL COATINGS</subject><subject>OPTICAL EQUIPMENT</subject><subject>OPTICAL MATERIALS</subject><subject>ORGANOMETALLIC COMPOUNDS</subject><subject>POLYMERIZATION</subject><subject>SURFACE ACTIVE SUBSTANCES</subject><subject>SURFACE PROPERTIES</subject><subject>SYNTHESIS(CHEMISTRY)</subject><subject>TIN COMPOUNDS</subject><subject>WETTING</subject><fulltext>true</fulltext><rsrctype>report</rsrctype><creationdate>1972</creationdate><recordtype>report</recordtype><sourceid>1RU</sourceid><recordid>eNrjZAhyzCvJLM7JzE1VcM5PLMnMSy_WUwhILCpR8PT01FNAyPoXpSfm5eemliTm5GQmKwTk51TmphYVK-SnKfgXlGQmJ-YoBJYm5mSWVPIwsKYl5hSn8kJpbgYZN9cQZw_dFKCy-GKgHakl8Y4uBpYGxqaWRsYEpAF6uzRT</recordid><startdate>197209</startdate><enddate>197209</enddate><creator>Montemarano, J A</creator><creator>Dyckman, E J</creator><scope>1RU</scope><scope>BHM</scope></search><sort><creationdate>197209</creationdate><title>Antislime Coatings. Part III. Antislime Organometallic Polymers of Optical Quality</title><author>Montemarano, J A ; Dyckman, E J</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-dtic_stinet_AD09035923</frbrgroupid><rsrctype>reports</rsrctype><prefilter>reports</prefilter><language>eng</language><creationdate>1972</creationdate><topic>ACRYLIC RESINS</topic><topic>ANTIFOULING COATINGS</topic><topic>ANTISLIME COATINGS</topic><topic>BACTERIA</topic><topic>Coatings, Colorants and Finishes</topic><topic>COPOLYMERIZATION</topic><topic>COUNTERMEASURES</topic><topic>ENVIRONMENTAL TESTS</topic><topic>FLUORINE COMPOUNDS</topic><topic>HALOGENATED HYDROCARBONS</topic><topic>HYDROCARBONS</topic><topic>LIGHT TRANSMISSION</topic><topic>OPTICAL COATINGS</topic><topic>OPTICAL EQUIPMENT</topic><topic>OPTICAL MATERIALS</topic><topic>ORGANOMETALLIC COMPOUNDS</topic><topic>POLYMERIZATION</topic><topic>SURFACE ACTIVE SUBSTANCES</topic><topic>SURFACE PROPERTIES</topic><topic>SYNTHESIS(CHEMISTRY)</topic><topic>TIN COMPOUNDS</topic><topic>WETTING</topic><toplevel>online_resources</toplevel><creatorcontrib>Montemarano, J A</creatorcontrib><creatorcontrib>Dyckman, E J</creatorcontrib><creatorcontrib>DAVID W TAYLOR NAVAL SHIP RESEARCH AND DEVELOPMENT CENTER ANNAPOLIS MD</creatorcontrib><collection>DTIC Technical Reports</collection><collection>DTIC STINET</collection></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext_linktorsrc</fulltext></delivery><addata><au>Montemarano, J A</au><au>Dyckman, E J</au><aucorp>DAVID W TAYLOR NAVAL SHIP RESEARCH AND DEVELOPMENT CENTER ANNAPOLIS MD</aucorp><format>book</format><genre>unknown</genre><ristype>RPRT</ristype><btitle>Antislime Coatings. Part III. Antislime Organometallic Polymers of Optical Quality</btitle><date>1972-09</date><risdate>1972</risdate><abstract>Organometallic polymers of optical quality have been prepared by various synthetic methods. The antisliming and antifouling performance of these polymers has been determined by clinical antibacterial assay and tropical field exposure trials. For the first time organometallic monomers have been copolymerized with fluoromonomers in an attempt to couple the antisliming and nonwetting characteristics of each into an optical material for underwater use. (Author-PL)</abstract><oa>free_for_read</oa></addata></record> |
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recordid | cdi_dtic_stinet_AD0903592 |
source | DTIC Technical Reports |
subjects | ACRYLIC RESINS ANTIFOULING COATINGS ANTISLIME COATINGS BACTERIA Coatings, Colorants and Finishes COPOLYMERIZATION COUNTERMEASURES ENVIRONMENTAL TESTS FLUORINE COMPOUNDS HALOGENATED HYDROCARBONS HYDROCARBONS LIGHT TRANSMISSION OPTICAL COATINGS OPTICAL EQUIPMENT OPTICAL MATERIALS ORGANOMETALLIC COMPOUNDS POLYMERIZATION SURFACE ACTIVE SUBSTANCES SURFACE PROPERTIES SYNTHESIS(CHEMISTRY) TIN COMPOUNDS WETTING |
title | Antislime Coatings. Part III. Antislime Organometallic Polymers of Optical Quality |
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