Synopsis of Social media discussions
The collective discussions demonstrate strong support and enthusiasm, with posts celebrating recognition, highlighting the versatile health monitoring capabilities, and sharing links to the publication and related websites, showing active interest and recognition of the research's importance.
Agreement
Moderate agreementMost discussions are supportive and positive about the research, highlighting recognition and application potential.
Interest
High level of interestPosts show high enthusiasm, with many expressing curiosity and excitement about the technology's capabilities.
Engagement
Moderate level of engagementMany participants actively reference the publication and related research activities, indicating meaningful engagement.
Impact
High level of impactThe focus on recognition, technological innovation, and real-world applications suggests that the discussions see significant influence and importance.
Social Mentions
YouTube
3 Videos
18 Posts
Blogs
2 Articles
News
9 Articles
Metrics
Video Views
498
Total Likes
89
Extended Reach
13,370
Social Features
32
Timeline: Posts about article
Top Social Media Posts
Posts referencing the article
Skin-Conformal TiC-MXene Tattoo Sensors for Vital Sign Monitoring
Researchers are developing ultrathin, skin-like sensors using TiC-MXene for continuous health monitoring. These tattoo-style sensors are lightweight, flexible, and capable of detecting vital signs such as pulse and respiration with high sensitivity.
Skin-Conformal TiC-MXene Tattoo Sensor for Vital Sign Monitoring
This video explains tattoo sensors and their working principles. It features a novel, skin-compatible strain sensor made from TiC-MXene, fabricated through laser patterning, capable of detecting vital signs with high sensitivity.
Laser-Patterned TiC-MXene Sensors for Skin-Conformal Healthcare Monitoring
This study demonstrates the development of a flexible, skin-compatible strain sensor made from a new 2D material called TiC-MXene, which can be easily fabricated using laser patterning to create ultra-thin tattoo-like sensors.
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https://t.co/L5Dh28101O Skin Conformal Tattoo Sensors to monitor vital health parameters - Insight by Dr Saurabh Kumar Watch this video on YouTube #science #india #scienceindia #indiascience #scienceunited #skinsensor #tattoo #tattoosensor #technology #indiatech #indiatechnology https://t.co/Z4eNyubOhC
view full postSeptember 6, 2020
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@abinashtripath (Twitter)RT @GroupProsen: Happy to see our work get recognition online! Here is the link to the journal publication https://t.co/2ZvukfNVHm. Here is…
view full postAugust 22, 2020
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ProSen Group
@GroupProsen (Twitter)Happy to see our work get recognition online! Here is the link to the journal publication https://t.co/2ZvukfNVHm. Here is the link to our research group's website https://t.co/flWK1l8zbL https://t.co/OP75iCyhA1
view full postAugust 22, 2020
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ProSen Group
@GroupProsen (Twitter)@drharshvardhan @CeNSEatIISc @iiscbangalore @IndiaDST @PMOIndia @narendramodi @CSIR_IND @BJP4India @AmitShah @BJP4Delhi @JPNadda Happy to see our work get recognition online! Here is the link to the journal publication https://t.co/2ZvukfNVHm. Here is the link to our research group's website https://t.co/flWK1l8zbL
view full postAugust 22, 2020
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nilesh kumar
@nileshk_CeNSE (Twitter)RT @ACS_Sensors: This temporary tattoo monitors respiration and pulse rate while remaining hardly noticeable. https://t.co/SrDxkXoGJn
view full postJuly 12, 2020
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ProSen Group
@GroupProsen (Twitter)RT @ACS_Sensors: This temporary tattoo monitors respiration and pulse rate while remaining hardly noticeable. https://t.co/SrDxkXoGJn
view full postJuly 8, 2020
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Prabhat Vashishth
@Prabhat1703 (Twitter)RT @ACS_Sensors: This temporary tattoo monitors respiration and pulse rate while remaining hardly noticeable. https://t.co/SrDxkXoGJn
view full postJuly 8, 2020
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Anas Saifi, Ph.D.
@saifianas23 (Twitter)RT @ACS_Sensors: This temporary tattoo monitors respiration and pulse rate while remaining hardly noticeable. https://t.co/SrDxkXoGJn
view full postJuly 8, 2020
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Vaishakh
@vaishakhk4 (Twitter)RT @ACS_Sensors: This temporary tattoo monitors respiration and pulse rate while remaining hardly noticeable. https://t.co/SrDxkXoGJn
view full postJuly 8, 2020
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Tarun Narayan
@tarun_narayn (Twitter)RT @ACS_Sensors: This temporary tattoo monitors respiration and pulse rate while remaining hardly noticeable. https://t.co/SrDxkXoGJn
view full postJuly 8, 2020
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Betul
@Betulcckzkn (Twitter)RT @ACS_Sensors: This temporary tattoo monitors respiration and pulse rate while remaining hardly noticeable. https://t.co/SrDxkXoGJn
view full postJuly 7, 2020
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Josh Diaz
@joshdiaz777 (Twitter)RT @ACS_Sensors: This temporary tattoo monitors respiration and pulse rate while remaining hardly noticeable. https://t.co/SrDxkXoGJn
view full postJuly 7, 2020
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Arnab Halder
@arnabkemi (Twitter)RT @ACS_Sensors: This temporary tattoo monitors respiration and pulse rate while remaining hardly noticeable. https://t.co/SrDxkXoGJn
view full postJuly 7, 2020
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ACS Sensors
@ACS_Sensors (Twitter)This temporary tattoo monitors respiration and pulse rate while remaining hardly noticeable. https://t.co/SrDxkXoGJn
view full postJuly 7, 2020
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ACS Sensors
@ACS_Sensors (Twitter)RT @GroupProsen: Read our latest journal, "Laser-Induced Direct Patterning of Free standing Ti3C2-MXene Films for Skin Conformal Tattoo Sen…
view full postJune 22, 2020
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Navya Rastogi
@navya39 (Twitter)RT @GroupProsen: Read our latest journal, "Laser-Induced Direct Patterning of Free standing Ti3C2-MXene Films for Skin Conformal Tattoo Sen…
view full postJune 22, 2020
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Krishnadas Narayanan Nampoothiri
@krishnadasnn (Twitter)RT @GroupProsen: Read our latest journal, "Laser-Induced Direct Patterning of Free standing Ti3C2-MXene Films for Skin Conformal Tattoo Sen…
view full postJune 22, 2020
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ProSen Group
@GroupProsen (Twitter)Read our latest journal, "Laser-Induced Direct Patterning of Free standing Ti3C2-MXene Films for Skin Conformal Tattoo Sensors" in @ACS_Sensors here! https://t.co/2ZvukfNVHm
view full postJune 20, 2020
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Abstract Synopsis
- This study demonstrates the development of a flexible, skin-compatible strain sensor made from a new 2D material called TiCMXene, which can be easily fabricated using laser patterning to create ultra-thin tattoo-like sensors.
- The TiCMXene-based sensor is highly sensitive, capable of detecting vital signs like pulse and respiration rates with a gauge factor of 7400, thanks to nanocrack formation that amplifies strain signals.
- These sensors are lightweight, unobtrusive, and capable of monitoring multiple health parameters simultaneously, making them promising tools for continuous health tracking through skin-mounted devices.]
Science United
@ScienceUnited (Twitter)