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DTSTART:20250330T030000
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DTSTAMP:20251006T061437Z
UID:BC1F2537-5AD4-4A69-97AA-845BFE6CEE5C
DTSTART;TZID=Europe/Prague:20251003T100000
DTEND;TZID=Europe/Prague:20251003T110000
DESCRIPTION:The emergence of MXenes\, particularly Ti₃C₂Tₓ\, has enab
 led the design of advanced electromagnetic devices with high conductivity\
 , tunable surface chemistry\, and compatibility with aqueous processing. T
 heir use in 3D-printed polymer waveguides has demonstrated efficient guidi
 ng of RF and microwave signals across 8–33 GHz with up to 93% transmissi
 on efficiency. Additionally\, reconfigurable MXene-based kirigami structur
 es have shown promise for adaptive surfaces in environmental monitoring an
 d space systems. In this presentation\, we highlighted recent advancements
  in MXene-based electromagnetic devices\, emphasizing their tunable proper
 ties\, structural adaptability\, and potential for next-generation communi
 cation and sensing applications.\n\nThis talk is part of the Microwave The
 ory and Technology Society Distinguished Lecturer Program. We also celebra
 te IEEE Day 2025 https://ieeeday.org/ with this event!\n\nCo-sponsored by:
  MTT DML Program\n\nSpeaker(s): Mohammad Zarifi\, \n\nRoom: lecture hall\,
  Institute of Photonics and Electronics of CAS\, Chaberska 1014/57\, Pragu
 e\, Czech Republic\, Czech Republic\, 18200
LOCATION:Room: lecture hall\, Institute of Photonics and Electronics of CAS
 \, Chaberska 1014/57\, Prague\, Czech Republic\, Czech Republic\, 18200
ORGANIZER:cifra@ufe.cz
SEQUENCE:22
SUMMARY:From 2D MXenes to 3D Antennas Radiating Waves Across Microwave and 
 RF Frequencies - M. Zarifi - Distinguished Microwave Lecturer
URL;VALUE=URI:https://events.vtools.ieee.org/m/502326
X-ALT-DESC:Description: &lt;br /&gt;&lt;p class=&quot;MsoNormal&quot; style=&quot;text-align: justi
 fy\;&quot;&gt;&lt;span lang=&quot;EN-CA&quot; style=&quot;font-size: 12.0pt\; line-height: 107%\; fo
 nt-family: &#39;Cambria&#39;\,serif\;&quot;&gt;The emergence of MXenes\, particularly Ti
 ₃C₂T&lt;/span&gt;&lt;span lang=&quot;EN-CA&quot; style=&quot;font-size: 12.0pt\; line-height: 
 107%\; font-family: &#39;Cambria&#39;\,serif\; mso-bidi-font-family: &#39;Cambria Math
 &#39;\;&quot;&gt;ₓ&lt;/span&gt;&lt;span lang=&quot;EN-CA&quot; style=&quot;font-size: 12.0pt\; line-height: 
 107%\; font-family: &#39;Cambria&#39;\,serif\;&quot;&gt;\, has enabled the design of advan
 ced electromagnetic devices with high conductivity\, tunable surface chemi
 stry\, and compatibility with aqueous processing. Their use in 3D-printed 
 polymer waveguides has demonstrated efficient guiding of RF and microwave 
 signals across 8&lt;/span&gt;&lt;span lang=&quot;EN-CA&quot; style=&quot;font-size: 12.0pt\; line-
 height: 107%\; font-family: &#39;Cambria&#39;\,serif\; mso-bidi-font-family: Aptos
 \;&quot;&gt;&amp;ndash\;&lt;/span&gt;&lt;span lang=&quot;EN-CA&quot; style=&quot;font-size: 12.0pt\; line-heig
 ht: 107%\; font-family: &#39;Cambria&#39;\,serif\;&quot;&gt;33 GHz with up to 93% transmis
 sion efficiency. Additionally\, reconfigurable MXene-based kirigami struct
 ures have shown promise for adaptive surfaces in environmental monitoring 
 and space systems. In this presentation\, we highlighted recent advancemen
 ts in MXene-based electromagnetic devices\, emphasizing their tunable prop
 erties\, structural adaptability\, and potential for next-generation commu
 nication and sensing applications.&lt;/span&gt;&lt;/p&gt;\n&lt;p class=&quot;MsoNormal&quot; style=
 &quot;text-align: justify\;&quot;&gt;&amp;nbsp\;&lt;/p&gt;\n&lt;p class=&quot;MsoNormal&quot; style=&quot;text-alig
 n: justify\;&quot;&gt;&lt;span lang=&quot;EN-CA&quot; style=&quot;font-size: 12.0pt\; line-height: 1
 07%\; font-family: &#39;Cambria&#39;\,serif\;&quot;&gt;This talk is part of the Microwave 
 Theory and Technology Society Distinguished Lecturer Program. We also cele
 brate IEEE Day 2025 &lt;a href=&quot;https://ieeeday.org/&quot;&gt;https://ieeeday.org/&lt;/a
 &gt; with this event!&lt;/span&gt;&lt;/p&gt;
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