Recent advances in graphene-based biosensor technology with applications in life sciences.
Janire Peña-Bahamonde, Hang N Nguyen, Sofia K Fanourakis, Debora F Rodrigues
September 2018 J NanobiotechnologySynopsis of Social media discussions
The overall sentiment is neutral, with some posts raising questions about whether graphene oxide needs to be present in the body for biosensing, which suggests skepticism or curiosity. The tone is cautious and analytical, emphasizing uncertainty around the biological compatibility and significance of the findings, leading to a neutral scoring across all dimensions.
Agreement
Neither agree nor disagreeThe discussions do not show a clear consensus, with certain posts questioning the necessity of graphene in biological detection, indicating mixed opinions.
Interest
Neutral level of interestBoth posts briefly mention the technological advances but do not delve deeply, reflecting moderate interest in the topic.
Engagement
Neutral engagementThe comments are minimal and somewhat superficial, with limited analysis or depth, suggesting low engagement.
Impact
Neutral impactThe discussions focus on theoretical concerns rather than practical applications, implying a perception of limited immediate impact.
Social Mentions
YouTube
10 Videos
16 Posts
Metrics
Video Views
1,124
Total Likes
24
Extended Reach
91,841
Social Features
26
Timeline: Posts about article
Top Social Media Posts
Posts referencing the article
Advances in Graphene Biosensors for Life Science Applications
Recent developments in graphene-based biosensor technology offer highly sensitive, rapid detection methods for medical and biological purposes, utilizing covalent bonding and physisorption for effective biomolecule interaction.
Advances in Graphene Biosensors for Life Science Applications
Graphene's unique structure enables highly sensitive biosensors. This video discusses recent developments in attaching biomolecules to graphene surfaces for rapid, accurate detection, essential for improved medical diagnostics and patient care.
Recent Advances in Graphene-Based Biosensors for Life Sciences
Recent advances in graphene-based biosensor technology with applications in life sciences highlight graphene's unique properties and methods for attaching biomolecules, enabling rapid and sensitive detection critical for medical diagnostics and patient care.
Advances in Graphene Biosensors for Medical Applications
Recent advances in graphene-based biosensor technology with applications in life sciences. Graphene's unique structure enables highly sensitive sensors for early disease detection and improved patient care.
Advancements in Graphene Biosensors for Life Science Applications
Recent advances in graphene-based biosensor technology with applications in life sciences. Graphene's unique physical properties enable the development of highly sensitive sensors for medical diagnostics, focusing on rapid, simple, and effective biomolecule detection.
Advances in Graphene Biosensors for Life Science Applications
Recent advances in graphene-based biosensor technology utilize graphene's unique properties to develop highly sensitive detection methods, enabling rapid and effective diagnosis in medical applications.
Advancements in Graphene Biosensors for Life Science Applications
Recent advances in graphene-based biosensor technology enable highly sensitive detection for medical diagnostics and life sciences. This video discusses the structural properties of graphene and innovative methods for attaching biomolecules to enhance sensor performance.
Advances in Graphene-Based Biosensors for Life Sciences Applications
Recent advances in graphene-based biosensor technology utilize graphene's unique properties for sensitive, rapid detection. These biosensors, developed with covalent bonding and physisorption methods, hold significant potential for early disease diagnosis and improved patient care.
Advances in Graphene-Based Biosensors for Life Sciences Applications
Recent advances in graphene-based biosensor technology focus on rapid, sensitive detection methods using covalent bonding and physisorption for biomolecule attachment, significantly improving early disease diagnosis and patient care.
Advances in Graphene Biosensors for Life Science Applications
Recent advances in graphene-based biosensor technology focus on its unique physical properties enabling highly sensitive detection. These biosensors utilize covalent bonding and physisorption to attach biomolecules, facilitating rapid and effective diagnostics crucial for healthcare and disease detection.
-
RT @IanHurn0: Recent advances in Graphene-Based Biosensor Technology with applications in life sciences 22 September 2018 https://t.co/Sj…
view full postAugust 28, 2025
5
-
MAUD NACU
@MaudNacu (Twitter)RT @IanHurn0: Recent advances in Graphene-Based Biosensor Technology with applications in life sciences 22 September 2018 https://t.co/Sj…
view full postAugust 2, 2025
5
-
Sylvain Vedrenne
@svedrenne (Twitter)RT @IanHurn0: Recent advances in Graphene-Based Biosensor Technology with applications in life sciences 22 September 2018 https://t.co/Sj…
view full postJuly 31, 2025
5
-
Corina
@corinacirco (Twitter)RT @IanHurn0: Recent advances in Graphene-Based Biosensor Technology with applications in life sciences 22 September 2018 https://t.co/Sj…
view full postJuly 31, 2025
5
-
Soignants Militants
@SoignantsMLU (Twitter)RT @IanHurn0: Recent advances in Graphene-Based Biosensor Technology with applications in life sciences 22 September 2018 https://t.co/Sj…
view full postJuly 31, 2025
5
-
Ian Hurn
@IanHurn0 (Twitter)Recent advances in Graphene-Based Biosensor Technology with applications in life sciences 22 September 2018 https://t.co/SjT6pgEkQi https://t.co/62ZO1k9AMa
view full postJuly 31, 2025
2
5
-
Jo Mirek
@JosMirek (Twitter)RT @IanHurn0: https://t.co/SjT6pgESFQ https://t.co/ffua5D8a9k
view full postJanuary 4, 2024
1
-
Ian Hurn
@IanHurn0 (Twitter)https://t.co/SjT6pgESFQ https://t.co/ffua5D8a9k
view full postJanuary 4, 2024
1
-
HUMAN INTERNET #TECH
@HumanInternet1 (Twitter)https://t.co/1dpwtBUeDq
view full postAugust 15, 2022
-
Tonnerre2021BIS
@Tonnerre2021B (Twitter)RT @gotchka: —> https://t.co/IEgcZP8k6a L'oxyde de graphène doit-il être présent dans votre corps pour permettre la "biodétection" ? https:…
view full postJune 17, 2022
5
-
G-e-n-o-e-f-f-a
@Genovef85756150 (Twitter)RT @gotchka: —> https://t.co/IEgcZP8k6a L'oxyde de graphène doit-il être présent dans votre corps pour permettre la "biodétection" ? https:…
view full postJune 16, 2022
5
-
invaders
@gotchka (Twitter)RT @gotchka: —> https://t.co/IEgcZP8k6a L'oxyde de graphène doit-il être présent dans votre corps pour permettre la "biodétection" ? https:…
view full postJune 14, 2022
5
-
Kektex01
@JosephAntoineM2 (Twitter)RT @gotchka: —> https://t.co/IEgcZP8k6a L'oxyde de graphène doit-il être présent dans votre corps pour permettre la "biodétection" ? https:…
view full postDecember 30, 2021
5
-
Novis
@vieconfuse (Twitter)RT @gotchka: —> https://t.co/IEgcZP8k6a L'oxyde de graphène doit-il être présent dans votre corps pour permettre la "biodétection" ? https:…
view full postDecember 29, 2021
5
-
invaders
@gotchka (Twitter)—> https://t.co/IEgcZP8k6a L'oxyde de graphène doit-il être présent dans votre corps pour permettre la "biodétection" ? https://t.co/YR6ueADDfs
view full postDecember 29, 2021
1
5
-
Erwan Le Corre
@ErwanLeCorre (Twitter)Recent advances in graphene-based biosensor technology with applications in life sciences | Journal of Nanobiotechnology | https://t.co/DiF3ZiH9Dl
view full postJuly 10, 2021
3
Abstract Synopsis
- Graphene's physical structure and properties make it suitable for advanced sensor technologies, particularly in developing highly sensitive biosensors.
- Researchers have employed methods like covalent bonding and physisorption to attach biomolecules, leading to effective interaction with graphene surfaces.
- The biosensors created using these methods offer rapid, simple, and sensitive detection, which is crucial for improving patient care and early disease diagnosis in medical applications.
Ian Hurn
@IanHurn0 (Twitter)