[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"detail-sidebar-cat-1-en-105":3,"doc-seo-191913-105":53,"doc-detail-191913-en":127},{"code":4,"msg":5,"data":6},0,"success",[7,14,19,24,29,34,39,44,49],{"id":8,"doc_module":9,"doc_module_name":10,"category_name":11,"show_sort_weight":12,"slug":13},11,1,"Template","Presentations",90,"presentations",{"id":15,"doc_module":9,"doc_module_name":10,"category_name":16,"show_sort_weight":17,"slug":18},12,"Resumes",80,"resumes",{"id":20,"doc_module":9,"doc_module_name":10,"category_name":21,"show_sort_weight":22,"slug":23},14,"Invoices",70,"invoices",{"id":25,"doc_module":9,"doc_module_name":10,"category_name":26,"show_sort_weight":27,"slug":28},15,"Posters",60,"posters",{"id":30,"doc_module":9,"doc_module_name":10,"category_name":31,"show_sort_weight":32,"slug":33},16,"Social Media",50,"social-media",{"id":35,"doc_module":9,"doc_module_name":10,"category_name":36,"show_sort_weight":37,"slug":38},17,"Forms",40,"forms",{"id":40,"doc_module":9,"doc_module_name":10,"category_name":41,"show_sort_weight":42,"slug":43},18,"Letters",30,"letters",{"id":45,"doc_module":9,"doc_module_name":10,"category_name":46,"show_sort_weight":47,"slug":48},21,"Paper Templates",5,"papers-templates",{"id":50,"doc_module":9,"doc_module_name":10,"category_name":51,"show_sort_weight":4,"slug":52},158,"General","general-158",{"code":4,"msg":54,"data":55},"ok",{"site_id":56,"language":57,"slug":58,"title":59,"keywords":60,"description":61,"schema_data":62,"social_meta":120,"head_meta":122,"extra_data":124,"updated_unix":126},105,"en","patterning-of-a-novel-nanocomposite-pressure-sensitive-adhesive","Patterning of a Novel Nanocomposite Pressure-Sensitive Adhesive","","This paper investigates the patterning of a novel nanocomposite pressure-sensitive adhesive (PSA). The study analyzes the effects of varying nanoparticle content on adhesion energy and mechanical properties, as well as the impact of IR heating on these characteristics. The results indicate that optimizing the nanoparticle content significantly enhances the adhesion energy and alters the mechanical response of the PSA. Specifically, the optimized nanocomposite PSA exhibits a substantially higher adhesion energy compared to the original PSA. Furthermore, IR heating leads to a notable increase in the Young's modulus and storage modulus of the nanocomposite material, suggesting a modification in its viscoelastic behavior. The data presented in the graphs and tables highlight key material properties, including hydrodynamic diameter, polydispersity, solids content, gel fraction, molecular weight averages (Mn, Mw), glass transition temperature (Tg), density, Young's modulus, storage modulus (E'), loss modulus (E''), tan delta, and adhesion energy (Eadh). The study provides valuable insights into the development of advanced nanocomposite adhesives with tunable properties for specific applications.",{"@graph":63,"@context":119},[64,80,102],{"@type":65,"itemListElement":66},"BreadcrumbList",[67,71,74,77],{"item":68,"name":69,"@type":70,"position":9},"https://docshare.wps.com","Home","ListItem",{"item":72,"name":10,"@type":70,"position":73},"https://docshare.wps.com/template/",2,{"item":75,"name":51,"@type":70,"position":76},"https://docshare.wps.com/template/general/",3,{"item":78,"name":59,"@type":70,"position":79},"https://docshare.wps.com/template/patterning-of-a-novel-nanocomposite-pressure-sensitive-adhesive/191913/",4,{"url":78,"name":59,"@type":81,"image":82,"author":87,"headline":59,"publisher":90,"fileFormat":93,"inLanguage":57,"description":61,"dateModified":94,"datePublished":95,"encodingFormat":93,"isAccessibleForFree":96,"interactionStatistic":97},"DigitalDocument",{"url":83,"@type":84,"width":85,"height":86},"https://docshare.wps.com/thumbnails/patterning-of-a-novel-nanocomposite-pressure-sensitive-adhesive/191913.png","ImageObject",442,249,{"name":88,"@type":89},"eBook King","Person",{"url":68,"name":91,"@type":92},"DocShare","Organization","application/pdf","2026-10-05","2026-09-03",true,{"@type":98,"interactionType":99,"userInteractionCount":101},"InteractionCounter",{"@type":100},"ViewAction",6,{"@type":103,"mainEntity":104},"FAQPage",[105,111,115],{"name":106,"@type":107,"acceptedAnswer":108},"What is the primary focus of this research?","Question",{"text":109,"@type":110},"This research focuses on the patterning of a novel nanocomposite pressure-sensitive adhesive (PSA) and the evaluation of its properties.","Answer",{"name":112,"@type":107,"acceptedAnswer":113},"How does nanoparticle content affect the adhesion energy?",{"text":114,"@type":110},"The study shows that optimizing nanoparticle content significantly enhances the adhesion energy of the PSA, with the optimized nanocomposite exhibiting a substantially higher adhesion energy compared to the original PSA.",{"name":116,"@type":107,"acceptedAnswer":117},"What is the effect of IR heating on the nanocomposite PSA?",{"text":118,"@type":110},"IR heating leads to a notable increase in the Young's modulus and storage modulus of the nanocomposite material, indicating a modification in its viscoelastic behavior.","https://schema.org",{"og:url":78,"og:type":121,"og:title":59,"og:site_name":91,"og:description":61},"article",{"robots":123,"canonical":78},"index,follow",{"doc_id":125,"site_id":56},191913,1788411653,{"code":4,"msg":5,"data":128},{"doc_id":125,"user_id":129,"nickname":88,"user_avatar":130,"doc_module":9,"category_id":50,"category_name":51,"doc_title":59,"doc_description":61,"doc_content":131,"file_id":132,"file_url":133,"file_type":134,"file_size":135,"view_count":101,"is_deleted":4,"is_public":9,"is_downloadable":9,"audit_status":9,"page_count":42,"language":136,"language_code":57,"site_id":56,"html_lang":57,"table_of_contents":137,"faqs":138,"seo_title":139,"seo_description":61,"update_tm":126,"read_time":8},962088006270,"https://ap-avatar.wpscdn.com/davatar_085a072bc5b1113ac321206ff7593b45","| Sample Description | Hydrodynamic\u003Cbr>Diameter [a][nm] | Size polydispersity [a] | Solids Content\u003Cbr>[wt. %] | Gel\u003Cbr>Fraction\u003Cbr>[wt. %] | Mn\u003Cbr>[g/mol] | Mw [g/mol] | Mw/Mn | Tg [b][°C] | Density\u003Cbr>[g/cm3] |  |\n| --- | --- | --- | --- | --- | --- | --- | --- | --- | --- | --- |\n|  |  |  |  |  |  |  |  |  |  |  |\n|  |  |  |  |  |  |  |  |  |  |  |\n| Poly(butyl\u003Cbr>acrylate) -\u003Cbr>rich latex | 220 | 0.086 | 34 ± 1 | 18 | 8,300 | 301,000 | 36.1 | -34.2 | 1.087] |  |\n|  |  |  |  |  |  |  |  |  |  |  |\n| Methacrylicrich Nanoparticle | 72 | 0.075 | 27 ± 1 | 0 | 4 ,570 | 113 ,000 | 24.7 | 70.6 | 1.205 ± 0.001 [c] |  |\n|  |  |  |  |  |  |  |  |  |  |  |\n\n\n| Sample\u003Cbr>Description | Young’s\u003Cbr>Modulus\u003Cbr>(MPa) (a) | Storage\u003Cbr>Modulus,\u003Cbr>E’(MPa)\u003Cbr>(b) | Loss\u003Cbr>Modulus,\u003Cbr>E”(MPa)\u003Cbr>(b) | Tan δ(a) | 3Tanδ/E’(10-6 Pa-1)\u003Cbr>(a) | Adhesion\u003Cbr>Energy, Eadh\u003Cbr>(J m-2) |\n| --- | --- | --- | --- | --- | --- | --- |\n| Original PSA | 0.13±0.04 | 0.23\u003Cbr>±0.03 | 0.11\u003Cbr>±0.03 | 0.47 | 6.0 | 356 ± 36 |\n| Original PSA – after IR heating | 0.11±0.04 | 0.22\u003Cbr>±0.03 | 0.34±0.03 | 1.58 | 22.0 | 290 ± 31 |\n| Optimized Nanocomposite PSA | 0.44±0.05 | 1.31\u003Cbr>±0.05 | 0.54\u003Cbr>±0.05 | 0.42 | 1.0 | 493 ± 40 |\n| Optimized |  |  |  |  |  |  |\n| Nanocomposite PSA – after IR heating | 2.92±0.05 | 6.87\u003Cbr>±0.05 | 0.97±0.05 | 0.14 | 0.06 | 39 ± 19 |","cbCairYSYplzHyqW","https://ap.wps.com/l/cbCairYSYplzHyqW","pdf",1407798,"English","# Material Properties of Nanoparticle Components","[{\"question\":\"What is the primary focus of this research?\",\"answer\":\"This research focuses on the patterning of a novel nanocomposite pressure-sensitive adhesive (PSA) and the evaluation of its properties.\"},{\"question\":\"How does nanoparticle content affect the adhesion energy?\",\"answer\":\"The study shows that optimizing nanoparticle content significantly enhances the adhesion energy of the PSA, with the optimized nanocomposite exhibiting a substantially higher adhesion energy compared to the original PSA.\"},{\"question\":\"What is the effect of IR heating on the nanocomposite PSA?\",\"answer\":\"IR heating leads to a notable increase in the Young's modulus and storage modulus of the nanocomposite material, indicating a modification in its viscoelastic behavior.\"}]","Patterning of a Novel Nanocomposite Pressure-Sensitive Adhesive | PDF"]