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Firat Güder

From Wikipedia, the free encyclopedia
Dr. rer. nat. Firat Güder
JCI TOYP Award Ceremony in Istanbul
Alma materHarvard University
University of Freiburg
KU Leuven
Furtwangen University
University of New Brunswick
Scientific career
InstitutionsImperial College London
Thesis Atomlagenabscheidung unterstützt Nanostrukturelle Transformationen
Academic advisorsGeorge M. Whitesides
Margit Zacharias
Websitewww.guderesearch.com

Firat Güder (FRSC) is a bioengineer, scientist, innovator and educator who is a professor of intelligent interfaces at Imperial College London.[1]

Güder is the Chief Engineer and the Principal Investigator of the Güder Research Group which he founded in 2016 in the Department of Bioengineering at Imperial.[2] In 2022, Güder was recognized as one of Ten Outstanding Young Persons of the World by Junior Chamber International for his contributions to science and technology, education, innovation and humanitarian efforts.[3][4]

He was a Research Fellow at the Department of Chemistry and Chemical Biology at Harvard University.[5] His position at Harvard was funded by the German Research Foundation International Fellowship.[6] At Harvard, he worked with George Whitesides.[7][8]

Research

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Güder and his research group work in the intersection of material science, electronics, computing, biology and chemistry to develop intelligent interfaces to connect complex chemical and biological systems with computers.[9] The overall aim of their research is to develop impactful technologies to address pressing, global challenges related to animal and human health, food systems and environment.[10] Güder is known for his work[10][11][12][13] on low-cost sensors and actuators,[14] wearable and implantable sensors and actuators,[15][16][17][18][19] software-based chemical sensors,[20] real-time physiological sensors for plants,[21][22] soft devices,[23] atomic layer deposition,[24][25] nanomaterials[26][27] and micro/nanofabrication[28] and the application of artificial intelligence in chemical and biological sensing.[20][22] His research is supported by the Bill and Melinda Gates Foundation,[29] Wellcome Trust, Royal Society,[30] EPSRC,[31] BBSRC,[31] Horizon Europe,[32] US Army,[30]Innovate UK,[33] EIT Health,[34] German Research Foundation.[6]

Startups and entreprenuership

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Güder is known for his translational activities having cofounded four deep tech startups to accelerate the delivery of societal impact of his research: BlakBear Ltd,[35] Unhindr Ltd.,[36] Spyras Ltd (acquired in 2022)[37] and AniML Ltd.[38] Güder is also a member of the Scientific Advisory Board of Movendo Capital which is a Netherlands-based Venture Capital firm managing a ~€500m fund to invest in food technologies.[39]

Education and scientific career

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Güder started his high school education at the Sanliurfa Anatolian High School before transferring to Rock Lake High School located in Rock Lake North Dakota, USA as an exchange student to finish off his high school education. Güder received his Bachelor of Science degree in Computer Engineering (First Division) from the University of New Brunswick, Canada in 2006.[37] After his undergraduate education, he moved to Europe to study toward an MSc degree in microsystem engineering at the Furtwangen University, Germany and KU Leuven (IMEC) in Belgium. In 2008, Güder joined the research group of Margit Zacharias at IMTEK, Albert-Ludwigs University of Freiburg as PhD candidate and finished his degree in 2012. His PhD thesis titled "Atomlagenabscheidung unterstützt Nanostrukturelle Transformationen/Atomic layer deposition assisted nanostructural transformations" primarily focused on the application of atomic layer deposition to synthesize nanomaterials, study high-temperature solid-solid chemical reactions, Kirkendall Effect and fabrication of nano and micro devices.[40] Güder stayed as a subgroup leader until the end of 2013 before moving to Harvard University as a German Research Foundation International Research Fellow to work with Professor George Whitesides in 2014.[6]

Recognition and awards

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  • Fellow of the Royal Society of Chemistry[37]
  • One of Ten Outstanding Young Persons of the World by Junior Chamber International [4]
  • President's Award for Excellence in Innovation and Entrepreneurship[41]
  • Winner of the Turkish leg of JCI Ten Outstanding Young Persons of the World in the Scientific Leadership category[42]
  • “Rising Star in Sensing” by ACS Sensors[43]
  • President's Medal for Excellence in Research for Outstanding Early Career Researcher [44]
  • University of New Brunswick Young Alumni Achievement Award [45]
  • Analytical Chemistry Trust Fund, Tom West Analytical Fellowship[37]
  • German Research Foundation International Fellowship[6]
  • KU Leuven International Scholarship[37]
  • Furtwangen University MTM Scholarship[37]
  • UNB Class of 1939 Scholarship[37]
  • N. Myles Brown Scholarship[37]
  • Governor Thomas Carleton Scholarship[37]

Outreach

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In addition to his scholarly work, Güder and his work is frequently featured in the international mainstream media for public outreach. In 2023, Güder was interviewed by the American innovator Dr. Roman Stolyarov on his hour-long Podcast, Pacemaker where the two discussed Güder's translational work on medical devices, especially wearable robotics.[46] Güder was also featured in several BBC Radio programs in 2019 and 2020 including "Keeping the structure of the internet safe" by BBC Digital Planet,[47] "Global Food Security, Reactive Use-By Labels, Origins of the Potato" by BBC Inside Science [48] and "The Barking Hour" hosted by Jo Good on BBC Radio London.[49] in 2022, Güder was interviewed by Mashable in relation to biometric sensors for dogs which was published in an article online named titled "Biometric dog collars claim to track your dog’s vitals. But are they fur real?".[50] His work on low-cost sensors for detecting food spoilage found particularly wide coverage in the mainstream media which included interviews and news pieces by Reuters, The Times, The Naked Scientists and Der Spiegel (German) among others.[51][52][53][54] In 2023, he was also interviewed by the Turkish science journalist Esra Oz which was published in Independent (Turkish).[55]

Güder and his team are also active in communicating their research on YouTube[56] and social media.[57][58] The science series created by Phil Coatsworth and published on the group's YouTube channel titled "6 questions with..." aims at showing the human side of scientists to the general public to encourage young minds to study science.[56]

References

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  1. ^ "Times Higher Education - University Rankings".
  2. ^ "Home - Dr Firat Guder". www.imperial.ac.uk. Retrieved 2023-08-07.
  3. ^ Meet the 2022 JCI Ten Outstanding Young Persons of the Year, retrieved 2023-08-07
  4. ^ a b "List of recipients of Ten Outstanding Young Persons of the World", Wikipedia, 2023-07-23, retrieved 2023-08-06
  5. ^ "Alumni". gmwgroup.harvard.edu. Retrieved 2023-08-07.
  6. ^ a b c d "DFG - GEPRIS - Höchst sensitive nanostrukturierte elektrische Sensoren aus Papier: Kostengünstige und schnelle Erkennung von Proteinbiomarkern". gepris.dfg.de. Retrieved 2023-08-07.
  7. ^ "The National Medal of Science 50th Anniversary | National Science Foundation". www.nsf.gov. Retrieved 2023-08-07.
  8. ^ "George M. Whitesides", Wikipedia, 2023-08-06, retrieved 2023-08-07
  9. ^ "The web presence of Guder Research Group at Imperial College London – Guder Research Group". Retrieved 2023-08-07.
  10. ^ a b "Publications – The web presence of Guder Research Group at Imperial College London". Retrieved 2023-08-07.
  11. ^ Barandun, Giandrin; Soprani, Matteo; Naficy, Sina; Grell, Max; Kasimatis, Michael; Chiu, Kwan Lun; Ponzoni, Andrea; Güder, Firat (2019-06-28). "Cellulose Fibers Enable Near-Zero-Cost Electrical Sensing of Water-Soluble Gases". ACS Sensors. 4 (6): 1662–1669. doi:10.1021/acssensors.9b00555. ISSN 2379-3694. PMC 7007283. PMID 31066550.
  12. ^ Barandun, Giandrin; Gonzalez-Macia, Laura; Lee, Hong Seok; Dincer, Can; Güder, Firat (2022-10-28). "Challenges and Opportunities for Printed Electrical Gas Sensors". ACS Sensors. 7 (10): 2804–2822. doi:10.1021/acssensors.2c01086. ISSN 2379-3694. PMC 9623589. PMID 36131601.
  13. ^ Li, Bing; Tan, Haijie; Jenkins, David; Srinivasa Raghavan, Vikram; Rosa, Bruno Gil; Güder, Firat; Pan, Genhua; Yeatman, Eric; Sharp, David J. (2020-10-30). "Clinical detection of neurodegenerative blood biomarkers using graphene immunosensor". Carbon. 168: 144–162. doi:10.1016/j.carbon.2020.06.048. hdl:10044/1/81000. ISSN 0008-6223. S2CID 221147443.
  14. ^ Dincer, Can; Bruch, Richard; Costa‐Rama, Estefanía; Fernández‐Abedul, Maria Teresa; Merkoçi, Arben; Manz, Andreas; Urban, Gerald Anton; Güder, Firat (2019-05-15). "Disposable Sensors in Diagnostics, Food, and Environmental Monitoring". Advanced Materials. 31 (30): 1806739. doi:10.1002/adma.201806739. hdl:10044/1/69878. ISSN 0935-9648. PMID 31094032. S2CID 155102091.
  15. ^ Güder, Firat; Ainla, Alar; Redston, Julia; Mosadegh, Bobak; Glavan, Ana; Martin, T. J.; Whitesides, George M. (2016-05-04). "Paper-Based Electrical Respiration Sensor". Angewandte Chemie International Edition. 55 (19): 5727–5732. doi:10.1002/anie.201511805. hdl:10044/1/54718. PMID 27059088. S2CID 12683302.
  16. ^ Adeel, Muhammad; Cotur, Yasin; Naik, Atharv; Gonzalez-Macia, Laura; Güder, Firat (November 2022). "Face masks as a platform for wearable sensors". Nature Electronics. 5 (11): 719–720. doi:10.1038/s41928-022-00871-2. ISSN 2520-1131.
  17. ^ Cotur, Yasin; Kasimatis, Michael; Kaisti, Matti; Olenik, Selin; Georgiou, Charis; Güder, Firat (April 2020). "Stretchable Composite Acoustic Transducer for Wearable Monitoring of Vital Signs". Advanced Functional Materials. 30 (16): 1910288. doi:10.1002/adfm.201910288. ISSN 1616-301X. PMC 7116191. PMID 33071715.
  18. ^ Alshabouna, Fahad; Lee, Hong Seok; Barandun, Giandrin; Tan, Ellasia; Cotur, Yasin; Asfour, Tarek; Gonzalez-Macia, Laura; Coatsworth, Philip; Núnez-Bajo, Estefanía; Kim, Ji-Seon; Güder, Firat (2022-10-01). "PEDOT:PSS-modified cotton conductive thread for mass manufacturing of textile-based electrical wearable sensors by computerized embroidery". Materials Today. 59: 56–67. doi:10.1016/j.mattod.2022.07.015. hdl:10044/1/98621. ISSN 1369-7021.
  19. ^ Ates, H. Ceren; Nguyen, Peter Q.; Gonzalez-Macia, Laura; Morales-Narváez, Eden; Güder, Firat; Collins, James J.; Dincer, Can (November 2022). "End-to-end design of wearable sensors". Nature Reviews Materials. 7 (11): 887–907. doi:10.1038/s41578-022-00460-x. ISSN 2058-8437. PMC 9306444. PMID 35910814.
  20. ^ a b Grell, Max; Barandun, Giandrin; Asfour, Tarek; Kasimatis, Michael; Collins, Alex Silva Pinto; Wang, Jieni; Güder, Firat (December 2021). "Point-of-use sensors and machine learning enable low-cost determination of soil nitrogen". Nature Food. 2 (12): 981–989. doi:10.1038/s43016-021-00416-4. hdl:10044/1/92945. ISSN 2662-1355. PMID 37118248. S2CID 245163427.
  21. ^ Coatsworth, Philip; Gonzalez-Macia, Laura; Collins, Alexander Silva Pinto; Bozkurt, Tolga; Güder, Firat (January 2023). "Continuous monitoring of chemical signals in plants under stress". Nature Reviews Chemistry. 7 (1): 7–25. doi:10.1038/s41570-022-00443-0. ISSN 2397-3358. PMID 37117825. S2CID 254620445.
  22. ^ a b Coatsworth, Philip; Cotur, Yasin; Naik, Atharv; Asfour, Tarek; Collins, Alex Silva-Pinto; Olenik, Selin; Gonzalez-Macia, Laura; Bozkurt, Tolga; Chao, Dai-Yin; Güder, Firat (2023). "Time-Resolved Chemical Phenotyping of Whole Plant Roots with Printed Electrochemical Sensors and Machine Learning". bioRxiv. doi:10.1101/2023.03.09.531921. S2CID 257535793.
  23. ^ Kasimatis, Michael; Nunez-Bajo, Estefania; Grell, Max; Cotur, Yasin; Barandun, Giandrin; Kim, Ji-Seon; Güder, Firat (2019-12-18). "Monolithic Solder-On Nanoporous Si-Cu Contacts for Stretchable Silicone Composite Sensors". ACS Applied Materials & Interfaces. 11 (50): 47577–47586. doi:10.1021/acsami.9b17076. ISSN 1944-8244. PMC 7116211. PMID 31714731.
  24. ^ Güder, Firat; Yang, Yang; Menzel, Andreas; Wang, Chunyu; Danhof, Julia; Subannajui, Kittitat; Hartel, Andreas; Hiller, Daniel; Kozhummal, Rajeevan; Ramgir, Niranjan S.; Cimalla, Volker; Schwarz, Ulrich T.; Zacharias, Margit (2012-11-05). "Superior Functionality by Design: Selective Ozone Sensing Realized by Rationally Constructed High-Index ZnO Surfaces". Small. 8 (21): 3307–3314. doi:10.1002/smll.201200841. PMID 22826095.
  25. ^ Boehler, Christian; Güder, Firat; Kücükbayrak, Umut M.; Zacharias, Margit; Asplund, Maria (2016-01-21). "A Simple Approach for Molecular Controlled Release based on Atomic Layer Deposition Hybridized Organic-Inorganic Layers". Scientific Reports. 6 (1): 19574. doi:10.1038/srep19574. ISSN 2045-2322. PMC 4726427. PMID 26791399.
  26. ^ Güder, Firat; Yang, Yang; Goetze, Silvana; Berger, Andreas; Ramgir, Niranjan; Hesse, Dietrich; Zacharias, Margit (2010-07-15). "Controlled Positioning of Large Interfacial Nanocavities via Stress-Engineered Void Localization". Small. 6 (15): 1603–1607. doi:10.1002/smll.201000561. PMID 20635347.
  27. ^ Güder, Firat; Yang, Yang; Danhof, Julia; Hartel, Andreas; Schwarz, Ulrich T.; Zacharias, Margit (2011). "Improved optical properties of ZnO thin films by concurrently introduced interfacial voids during thermal annealing". Applied Physics Letters. 99 (2). doi:10.1063/1.3609321. Retrieved 2023-08-07.
  28. ^ Güder, Firat; Yang, Yang; Krüger, Michael; Stevens, Gregory B.; Zacharias, Margit (2010-12-22). "Atomic Layer Deposition on Phase-Shift Lithography Generated Photoresist Patterns for 1D Nanochannel Fabrication". ACS Applied Materials & Interfaces. 2 (12): 3473–3478. doi:10.1021/am100592f. ISSN 1944-8244. PMID 21047101.
  29. ^ "Near-Field Communication-Enabled Precision Molecular Diagnostics for Smartphones". gcgh.grandchallenges.org. Retrieved 2023-08-07.
  30. ^ a b "Sponsors – The web presence of Guder Research Group at Imperial College London". Retrieved 2023-08-07.
  31. ^ a b "EPSRC and BBSRC Projects for Firat Guer".
  32. ^ "Cure4Aqua". cure4aqua-project.eu. Retrieved 2023-08-07.
  33. ^ "Arm-strengthening device to be brought to the clinic with £800k grant | Imperial News | Imperial College London". Imperial News. 2022-08-23. Retrieved 2023-08-07.
  34. ^ "EIT Health supported start-up Unhindr awarded £500,000". EIT Health. Retrieved 2023-08-07.
  35. ^ "BlakBear - Make Food Efficient". Retrieved 2023-08-06.
  36. ^ "Home". Go unhindered. Retrieved 2023-08-06.
  37. ^ a b c d e f g h i "Firat – The web presence of Guder Research Group at Imperial College London". Retrieved 2023-08-07.
  38. ^ "Wearables for animals". AniML Tech. Retrieved 2023-08-06.
  39. ^ "Fırat Güder on LinkedIn: #transformingthefuture #food #tech #vc | 26 comments". www.linkedin.com. Retrieved 2023-08-25.
  40. ^ Güder, Firat (2012). "Atomlagenabscheidung unterstützt Nanostrukturelle Transformationen". FreiDok Plus - Universitaetsbibliothek Freiburg.
  41. ^ Nixon, Elizabeth (2022-06-28). "President's Awards for Excellence in Research". Senior appointments. Retrieved 2023-08-06.
  42. ^ "Ülkemizin gururu 10 başarılı genç ödüllendirildi". aksam.com.tr (in Turkish). 2021-12-11. Retrieved 2023-08-13.
  43. ^ "Rising Stars in Sensing".
  44. ^ "Recent Awards and Prizes". Imperial College London. Retrieved 2023-08-06.
  45. ^ "Recognizing exceptional young alumni with Proudly UNB Awards". blogs.unb.ca. Retrieved 2023-08-06.
  46. ^ "The Pacemaker: Professor Firat Guder: AI Adjustable Prosthetic Liners with Unhindr on Apple Podcasts". Apple Podcasts. Retrieved 2023-08-07.
  47. ^ "BBC World Service - Digital Planet, Keeping the structure of the internet safe". BBC. Retrieved 2023-08-07.
  48. ^ "BBC Radio 4 - BBC Inside Science, Global Food Security, Reactive Use-By Labels, Origins of the Potato". BBC. Retrieved 2023-08-07.
  49. ^ "BBC Radio London - The Barking Hour".
  50. ^ "Biometric dog collars claim to track your dog's vitals. But are they fur real?". Mashable. 2022-01-23. Retrieved 2023-08-07.
  51. ^ "Freshness sensor tells you the moment food has gone off". 2023-08-07.
  52. ^ "How do you know if food is past its best?". www.thenakedscientists.com. 2019-02-07. Retrieved 2023-08-07.
  53. ^ "Freshness sensors could replace food 'use-by' dates | Reuters Video". www.reuters.com. Retrieved 2023-08-07.
  54. ^ Merlot, Julia (2019-06-05). "Lebensmittelverschwendung: Sensor erkennt schlechte Lebensmittel". Der Spiegel (in German). ISSN 2195-1349. Retrieved 2023-08-07.
  55. ^ "VİDEO | Akıllı toprak sensörleri gıdalarımızın tazeliğini gösterecek, toprağın azot miktarını ölçecek". Independent Türkçe (in Turkish). Retrieved 2023-08-07.
  56. ^ a b "Güder Research Group - YouTube". www.youtube.com. Retrieved 2023-08-07.
  57. ^ "Guder Research Group on Twitter".
  58. ^ "LinkedIn for Firat Guder".