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Gruppiert nach: Dokumententyp | Veröffentlichungsdatum
Springe zu: 2024 | 2023 | 2022 | 2021 | 2020 | 2019 | 2018 | 2017 | 2016 | 2014 | 2011 | 2010
Anzahl der Publikationen: 58

2024

Gronkiewicz, Karolina; Richter, Lars ORCID logoORCID: https://orcid.org/0000-0003-0819-9248; Knechtel, Fabian; Pyrcz, Patryk; Leidinger, Paul; Günther, Sebastian ORCID logoORCID: https://orcid.org/0000-0002-2415-232X; Ploetz, Evelyn ORCID logoORCID: https://orcid.org/0000-0003-0922-875X; Tinnefeld, Philip ORCID logoORCID: https://orcid.org/0000-0003-4290-7770 und Kamińska, Izabela ORCID logoORCID: https://orcid.org/0000-0002-9435-8198 (2024): Expanding the range of graphene energy transfer with multilayer graphene. In: Nanoscale, Bd. 16, Nr. 28: S. 13464-13470 [PDF, 1MB]

2023

Richter, Lars ORCID logoORCID: https://orcid.org/0000-0003-0819-9248; Szalai, Alan M. ORCID logoORCID: https://orcid.org/0000-0002-3795-3230; Manzanares‐Palenzuela, C. Lorena ORCID logoORCID: https://orcid.org/0000-0002-3805-0076; Kamińska, Izabela ORCID logoORCID: https://orcid.org/0000-0002-9435-8198 und Tinnefeld, Philip ORCID logoORCID: https://orcid.org/0000-0003-4290-7770 (2023): Exploring the Synergies of Single‐Molecule Fluorescence and 2D Materials Coupled by DNA. In: Advanced Materials, Bd. 35, Nr. 41 [PDF, 2MB]

2022

Close, Cindy ORCID logoORCID: https://orcid.org/0000-0003-4728-033X; Trofymchuk, Kateryna ORCID logoORCID: https://orcid.org/0000-0003-3453-1320; Grabenhorst, Lennart ORCID logoORCID: https://orcid.org/0000-0001-9503-1819; Lalkens, Birka ORCID logoORCID: https://orcid.org/0000-0002-8181-3964; Glembockyte, Viktorija ORCID logoORCID: https://orcid.org/0000-0003-2531-6506 und Tinnefeld, Philip ORCID logoORCID: https://orcid.org/0000-0003-4290-7770 (22. August 2022): Maximizing the Accessibility in DNA Origami Nanoantenna Plasmonic Hotspots. In: Advanced Materials Interfaces, Bd. 9, Nr. 24, 2200255 [PDF, 6MB]

Baumann, Kevin N.; Schroeder, Tim; Ciryam, Prashanth S.; Morzy, Diana; Tinnefeld, Philip; Knowles, Tuomas P. J. und Hernandez-Ainsa, Silvia (2022): DNA-Liposome Hybrid Carriers for Triggered Cargo Release. In: ACS Applied Bio Materials, Bd. 5, Nr. 8: S. 3713-3721

Baumann, Kevin N.; Schroeder, Tim; Ciryam, Prashanth S.; Morzy, Diana; Tinnefeld, Philip; Knowles, Tuomas P. J. und Hernandez-Ainsa, Silvia (2022): DNA-Liposome Hybrid Carriers for Triggered Cargo Release. In: ACS Applied Bio Materials, Bd. 5, Nr. 8: S. 3713-3721

Ochmann, Sarah E.; Schröder, Tim; Schulz, Clara M. und Tinnefeld, Philip (2022): Quantitative Single-Molecule Measurements of Membrane Charges with DNA Origami Sensors. In: Analytical Chemistry, Bd. 94, Nr. 5: S. 2633-2640

Hubner, Kristina; Raab, Mario; Bohlen, Johann; Bauer, Julian und Tinnefeld, Philip (2022): Salt-induced conformational switching of a flat rectangular DNA origami structure. In: Nanoscale, Bd. 14, Nr. 21: S. 7898-7905

2021

Pfeiffer, Martina; Trofymchuk, Kateryna ORCID logoORCID: https://orcid.org/0000-0003-3453-1320; Ranallo, Simona; Ricci, Francesco; Steiner, Florian ORCID logoORCID: https://orcid.org/0000-0002-9148-5837; Cole, Fiona; Glembockyte, Viktorija ORCID logoORCID: https://orcid.org/0000-0003-2531-6506 und Tinnefeld, Philip ORCID logoORCID: https://orcid.org/0000-0003-4290-7770 (24. September 2021): Single antibody detection in a DNA origami nanoantenna. In: iScience, Bd. 24, Nr. 9, 103072 [PDF, 2MB]

Glembockyte, Viktorija ORCID logoORCID: https://orcid.org/0000-0003-2531-6506; Grabenhorst, Lennart ORCID logoORCID: https://orcid.org/0000-0001-9503-1819; Trofymchuk, Kateryna ORCID logoORCID: https://orcid.org/0000-0003-3453-1320 und Tinnefeld, Philip ORCID logoORCID: https://orcid.org/0000-0003-4290-7770 (26. August 2021): DNA Origami Nanoantennas for Fluorescence Enhancement. In: Accounts of Chemical Research, Bd. 54, Nr. 17: S. 3338-3348 [PDF, 4MB]

Trofymchuk, Kateryna ORCID logoORCID: https://orcid.org/0000-0003-3453-1320; Glembockyte, Viktorija ORCID logoORCID: https://orcid.org/0000-0003-2531-6506; Grabenhorst, Lennart ORCID logoORCID: https://orcid.org/0000-0001-9503-1819; Steiner, Florian ORCID logoORCID: https://orcid.org/0000-0002-9148-5837; Vietz, Carolin ORCID logoORCID: https://orcid.org/0000-0002-8417-4168; Close, Cindy ORCID logoORCID: https://orcid.org/0000-0003-4728-033X; Pfeiffer, Martina; Richter, Lars ORCID logoORCID: https://orcid.org/0000-0003-0819-9248; Schütte, Max L.; Selbach, Florian ORCID logoORCID: https://orcid.org/0000-0003-3870-9069; Yaadav, Renukka ORCID logoORCID: https://orcid.org/0000-0002-2633-1639; Zähringer, Jonas ORCID logoORCID: https://orcid.org/0000-0002-5136-0669; Wei, Qingshan ORCID logoORCID: https://orcid.org/0000-0003-1214-010X; Ozcan, Aydogan; Lalkens, Birka; Acuna, Guillermo ORCID logoORCID: https://orcid.org/0000-0001-8066-2677 und Tinnefeld, Philip ORCID logoORCID: https://orcid.org/0000-0003-4290-7770 (11. Februar 2021): Addressable nanoantennas with cleared hotspots for single-molecule detection on a portable smartphone microscope. In: Nature Communications, Bd. 12, 950 [PDF, 1MB]

Huebner, Kristina; Joshi, Himanshu; Aksimentiev, Aleksei; Stefani, Fernando D.; Tinnefeld, Philip und Acuna, Guillermo P. (2021): Determining the In-Plane Orientation and Binding Mode of Single Fluorescent Dyes in DNA Origami Structures. In: ACS Nano, Bd. 15, Nr. 3: S. 5109-5117

Eiring, Patrick; McLaughlin, Ryan; Matikonda, Siddharth S.; Han, Zhongying; Grabenhorst, Lennart; Helmerich, Dominic A.; Meub, Mara; Beliu, Gerti; Luciano, Michael; Bandi, Venu; Zijlstra, Niels; Shi, Zhen-Dan; Tarasov, Sergey G.; Swenson, Rolf; Tinnefeld, Philip; Glembockyte, Viktorija; Cordes, Thorben; Sauer, Markus und Schnermann, Martin J. (2021): Targetable Conformationally Restricted Cyanines Enable Photon-Count-Limited Applications**. In: Angewandte Chemie-International Edition, Bd. 60, Nr. 51: S. 26685-26693

Szalai, Alan M.; Siarry, Bruno; Lukin, Jeronimo; Giusti, Sebastian; Unsain, Nicolas; Caceres, Alfredo; Steiner, Florian; Tinnefeld, Philip; Refojo, Damian; Jovin, Thomas M. und Stefani, Fernando D. (2021): Super-resolution Imaging of Energy Transfer by Intensity-Based STED-FRET. In: Nano Letters, Bd. 21, Nr. 5: S. 2296-2303

Trofymchuk, Kateryna; Glembockyte, Viktorija; Grabenhorst, Lennart; Steiner, Florian; Vietz, Carolin; Close, Cindy; Pfeiffer, Martina; Richter, Lars; Schuette, Max L.; Selbach, Florian; Yaadav, Renukka; Zaehringer, Jonas; Wei, Qingshan; Ozcan, Aydogan; Lalkens, Birka; Acuna, Guillermo P. und Tinnefeld, Philip (2021): Addressable nanoantennas with cleared hotspots for single-molecule detection on a portable smartphone microscope. In: Nature Communications, Bd. 12, Nr. 1, 950

Shani, Lior; Tinnefeld, Philip; Fleger, Yafit; Sharoni, Amos; Shapiro, Boris Ya.; Shaulov, Avner; Gang, Oleg und Yeshurun, Yosef (2021): DNA origami based superconducting nanowires. In: Aip Advances, Bd. 11, Nr. 1, 15130

Glembockyte, Viktorija; Grabenhorst, Lennart; Trofymchuk, Kateryna und Tinnefeld, Philip (2021): DNA Origami Nanoantennas for Fluorescence Enhancement. In: Accounts of Chemical Research, Bd. 54, Nr. 17: S. 3338-3348

Hedley, Gordon J.; Schroeder, Tim; Steiner, Florian; Eder, Theresa; Hofmann, Felix J.; Bange, Sebastian; Laux, Dirk; Hoeger, Sigurd; Tinnefeld, Philip; Lupton, John M. und Vogelsang, Jan (2021): Picosecond time-resolved photon antibunching measures nanoscale exciton motion and the true number of chromophores. In: Nature Communications, Bd. 12, Nr. 1, 1327

Kaminska, Izabela; Bohlen, Johann; Yaadav, Renukka; Schueler, Patrick; Raab, Mario; Schroeder, Tim; Zaehringer, Jonas; Zielonka, Karolina; Krause, Stefan und Tinnefeld, Philip (2021): Graphene Energy Transfer for Single-Molecule Biophysics, Biosensing, and Super-Resolution Microscopy. In: Advanced Materials, Bd. 33, Nr. 24, 2101099

Kesici, Merve-Zeynep; Tinnefeld, Philip und Vera, Andres Manuel (2021): A simple and general approach to generate photoactivatable DNA processing enzymes. In: Nucleic Acids Research, Bd. 50, Nr. 6

Krause, Stefan; Plötz, Evelyn; Bohlen, Johann; Schüler, Patrick; Yaadav, Renukka; Selbach, Florian; Steiner, Florian; Kaminska, Izabela und Tinnefeld, Philip (2021): Graphene-on-Glass Preparation and Cleaning Methods Characterized by Single-Molecule DNA Origami Fluorescent Probes and Raman Spectroscopy. In: ACS Nano, Bd. 15, Nr. 4: S. 6430-6438

Masullo, Luciano A.; Steiner, Florian; Zahringer, Jonas; Lopez, Lucia F.; Bohlen, Johann; Richter, Lars; Cole, Fiona; Tinnefeld, Philip und Stefani, Fernando D. (2021): Pulsed Interleaved MINFLUX. In: Nano Letters, Bd. 21, Nr. 1: S. 840-846

Ochmann, Sarah E.; Joshi, Himanshu; Bueber, Ece; Franquelim, Henri G.; Stegemann, Pierre; Sacca, Barbara; Keyser, Ulrich F.; Aksimentiev, Aleksei und Tinnefeld, Philip (2021): DNA Origami Voltage Sensors for Transmembrane Potentials with Single-Molecule Sensitivity. In: Nano Letters, Bd. 21, Nr. 20: S. 8634-8641

Pfeiffer, Martina; Trofymchuk, Kateryna; Ranallo, Simona; Ricci, Francesco; Steiner, Florian; Cole, Fiona; Glembockyte, Viktorija und Tinnefeld, Philip (2021): Single antibody detection in a DNA origami nanoantenna. In: Iscience, Bd. 24, Nr. 9, 103072

Vera, Andres Manuel; Galera-Prat, Albert; Wojciechowski, Michal; Rozycki, Bartosz; Laurents, Douglas V.; Carrion-Vazquez, Mariano; Cieplak, Marek und Tinnefeld, Philip (2021): Cohesin-dockerin code in cellulosomal dual binding modes and its allosteric regulation by proline isomerization. In: Structure, Bd. 29, Nr. 6: S. 587-597

Schröder, Tim; Bange, Sebastian; Schedlbauer, Jakob; Steiner, Florian; Lupton, John M.; Tinnefeld, Philip und Vogelsang, Jan (2021): How Blinking Affects Photon Correlations in Multichromophoric Nanoparticles. In: ACS Nano, Bd. 15, Nr. 11: S. 18037-18047

2020

Scheckenbach, Michael ORCID logoORCID: https://orcid.org/0000-0002-7912-6292; Bauer, Julian ORCID logoORCID: https://orcid.org/0000-0001-7110-3494; Zähringer, Jonas ORCID logoORCID: https://orcid.org/0000-0002-5136-0669; Selbach, Florian ORCID logoORCID: https://orcid.org/0000-0003-3870-9069 und Tinnefeld, Philip ORCID logoORCID: https://orcid.org/0000-0003-4290-7770 (10. November 2020): DNA origami nanorulers and emerging reference structures. In: APL Materials, Bd. 8, 110902 [PDF, 6MB]

Scheckenbach, Michael ORCID logoORCID: https://orcid.org/0000-0002-7912-6292; Schubert, Tom; Forthmann, Carsten; Glembockyte, Viktorija ORCID logoORCID: https://orcid.org/0000-0003-2531-6506 und Tinnefeld, Philip ORCID logoORCID: https://orcid.org/0000-0003-4290-7770 (November 2020): Self-Regeneration and Self-Healing in DNA Origami Nanostructures. In: Angewandte Chemie International Edition [PDF, 1MB]

Grabenhorst, Lennart ORCID logoORCID: https://orcid.org/0000-0001-9503-1819; Trofymchuk, Kateryna; Steiner, Florian ORCID logoORCID: https://orcid.org/0000-0002-9148-5837; Glembockyte, Viktorija ORCID logoORCID: https://orcid.org/0000-0003-2531-6506 und Tinnefeld, Philip ORCID logoORCID: https://orcid.org/0000-0003-4290-7770 (5. Februar 2020): Fluorophore photostability and saturation in the hotspot of DNA origami nanoantennas. In: Methods and Applications in Fluorescence, Bd. 8, Nr. 2, 024003 [PDF, 1MB]

Isselstein, Michael; Zhang, Lei; Glembockyte, Viktorija; Brix, Oliver; Cosa, Gonzalo; Tinnefeld, Philip und Cordes, Thorben ORCID logoORCID: https://orcid.org/0000-0002-8598-5499 (2020): Self-Healing Dyes - Keeping the Promise? In: Journal of physical chemistry letters, Bd. 11, Nr. 11: S. 4462-4480 [PDF, 12MB]

Trofymchuk, Kateryna; Glembockyte, Viktorija ORCID logoORCID: https://orcid.org/0000-0003-2531-6506; Grabenhorst, Lennart ORCID logoORCID: https://orcid.org/0000-0001-9503-1819; Steiner, Florian ORCID logoORCID: https://orcid.org/0000-0002-9148-5837; Vietz, Carolin; Close, Cindy; Pfeiffer, Martina; Richter, Lars; Schütte, Max L.; Selbach, Florian; Yaadav, Renukka; Zähringer, Jonas; Wei, Qingshan; Ozcan, Aydogan; Lalkens, Birka; Acuna, Guillermo P. und Tinnefeld, Philip ORCID logoORCID: https://orcid.org/0000-0003-4290-7770 (2020): Addressable Nanoantennas with Cleared Hotspots for Single-Molecule Detection on a Portable Smartphone Microscope. bioRxiv [PDF, 1MB]

Liu, Zhaowei; Liu, Haipei; Vera, Andres M.; Bernardi, Rafael C.; Tinnefeld, Philip ORCID logoORCID: https://orcid.org/0000-0003-4290-7770 und Nash, Michael A. (2020): High force catch bond mechanism of bacterial adhesion in the human gut. In: Nature Communications, Bd. 11, Nr. 1, 4321 [PDF, 1MB]

Matikonda, Siddharth S.; Hammersley, Gabrielle; Kumari, Nikita; Grabenhorst, Lennart; Glembockyte, Viktorija; Tinnefeld, Philip; Ivanic, Joseph; Levitus, Marcia und Schnermann, Martin J. (2020): Impact of Cyanine Conformational Restraint in the Near-Infrared Range. In: Journal of Organic Chemistry, Bd. 85, Nr. 9: S. 5907-5915

Kramm, Kevin; Schröder, Tim; Gouge, Jerome; Vera, Andres Manuel; Gupta, Kapil; Heiss, Florian B.; Liedl, Tim; Engel, Christoph; Berger, Imre; Vannini, Alessandro; Tinnefeld, Philip und Grohmann, Dina (2020): DNA origami-based single-molecule force spectroscopy elucidates RNA Polymerase III pre-initiation complex stability. In: Nature Communications, Bd. 11, Nr. 1 [PDF, 2MB]

2019

Vietz, Carolin; Schütte, Max L.; Wei, Qingshan; Richter, Lars; Lalkens, Birka; Ozcan, Aydogan; Tinnefeld, Philip und Acuna, Guillermo P. (9. Januar 2019): Benchmarking Smartphone Fluorescence-Based Microscopy with DNA Origami Nanobeads: Reducing the Gap toward Single-Molecule Sensitivity. In: ACS Omega, Bd. 4, Nr. 1: S. 637-642 [PDF, 3MB]

Schröder, Tim; Scheible, Max B.; Steiner, Florian; Vogelsang, Jan und Tinnefeld, Philip (2019): Interchromophoric Interactions Determine the Maximum Brightness Density in DNA Origami Structures. In: Nano Letters, Bd. 19, Nr. 2: S. 1275-1281

Choi, Youngeun; Schmidt, Carsten; Tinnefeld, Philip ORCID logoORCID: https://orcid.org/0000-0003-4290-7770; Bald, Ilko und Roediger, Stefan (2019): A new reporter design based on DNA origami nanostructures for quantification of short oligonucleotides using microbeads. In: Scientific Reports, Bd. 9, 4769 [PDF, 3MB]

Hubner, Kristina; Pilo-Pais, Mauricio; Selbach, Florian; Liedl, Tim; Tinnefeld, Philip; Stefani, Fernando D. und Acuna, Guillermo P. (2019): Directing Single-Molecule Emission with DNA Origami-Assembled Optical Antennas. In: Nano Letters, Bd. 19, Nr. 9: S. 6629-6634

Bohlen, Johann; Cuartero-González, Á.; Pibiri, E.; Ruhlandt, D.; Fernández-Domínguez, A. I.; Tinnefeld, Philip und Acuna, Guillermo P. (2019): Plasmon-assisted Förster resonance energy transfer at the single-molecule level in the moderate quenching regime. In: Nanoscale, Nr. 16: S. 7674-7681 [PDF, 1MB]

2018

Scheible, Max B. und Tinnefeld, Philip (14. Februar 2018): Quantifying Expansion Microscopy with DNA Origami Expansion Nanorulers. In: bioRxiv [PDF, 1MB]

Raab, Mario; Jusuk, Ija; Molle, Julia; Buhr, Egbert; Bodermann, Bernd; Bergmann, Detlef; Bosse, Harald und Tinnefeld, Philip (29. Januar 2018): Using DNA origami nanorulers as traceable distance measurement standards and nanoscopic benchmark structures. In: Scientific Reports, Bd. 8, Nr. 1780 [PDF, 3MB]

Hemmig, Elisa A.; Fitzgerald, Clare; Maffeo, Christopher; Hecker, Lisa; Ochmann, Sarah E.; Aksimentiev, Aleksei; Tinnefeld, Philip und Keyser, Ulrich F. (2018): Optical Voltage Sensing Using DNA Origami. In: Nano Letters, Bd. 18, Nr. 3: S. 1962-1971

Hellenkamp, Björn; Schmid, Sonja; Doroshenko, Olga; Opanasyuk, Oleg; Kuhnemuth, Ralf; Adariani, Soheila Rezaei; Ambrose, Benjamin; Aznauryan, Mikayel; Barth, Anders; Birkedal, Victoria; Bowen, Mark E.; Chen, Hongtao; Cordes, Thorben; Eilert, Tobias; Fijen, Carel; Gebhardt, Christian; Götz, Markus; Gouridis, Giorgos; Gratton, Enrico; Ha, Taekjip; Hao, Pengyu; Hanke, Christian A.; Hartmann, Andreas; Hendrix, Jelle; Hildebrandt, Lasse L.; Hirschfeld, Verena; Hohlbein, Johannes; Hua, Boyang; Hubner, Christian G.; Kallis, Eleni; Kapanidis, Achillefs N.; Kim, Jae-Yeol; Krainer, Georg; Lamb, Don C.; Lee, Nam Ki; Lemke, Edward A.; Levesque, Brie; Levitus, Marcia; McCann, James J.; Naredi-Rainer, Nikolaus; Nettels, Daniel; Ngo, Thuy; Qiu, Ruoyi; Robb, Nicole C.; Röcker, Carlheinz; Sanabria, Hugo; Schlierf, Michael; Schröder, Tim; Schuler, Benjamin; Seidel, Henning; Streit, Lisa; Thurn, Johann; Tinnefeld, Philip; Tyagi, Swati; Vandenberk, Niels; Vera, Andres Manuel; Weninger, Keith R.; Wünsch, Bettina; Yanez-Orozco, Inna S.; Michaelis, Jens; Seidel, Claus A. M.; Craggs, Timothy D. und Hugel, Thorsten (2018): Publisher Correction: Precision and accuracy of single-molecule FRET measurements-a multi-laboratory benchmark study. In: Nature Methods, Bd. 15, Nr. 11 [PDF, 4MB]

Kaminska, Izabela; Bohlen, Johann; Mackowski, Sebastian; Tinnefeld, Philip und Acuna, Guillermo P. (2018): Strong Plasmonic Enhancement of a Single Peridinin-Chlorophyll a-Protein Complex on DNA Origami-Based Optical Antennas. In: ACS Nano, Bd. 12, Nr. 2: S. 1650-1655

Gust, Alexander; Jakob, Leonhard; Zeitler, Daniela M.; Bruckmann, Astrid; Kramm, Kevin; Willkomm, Sarah; Tinnefeld, Philip; Meister, Gunter und Grohmann, Dina (2018): Site-Specific Labelling of Native Mammalian Proteins for Single-Molecule FRET Measurements. In: Chembiochem, Bd. 19, Nr. 8: S. 780-783

Kaminska, Izabela; Vietz, Carolin; Cuartero-Gonzalez, Alvaro; Tinnefeld, Philip; Fernandez-Dominguez, Antonio I. und Acuna, Guillermo P. (2018): Strong plasmonic enhancement of single molecule photostability in silver dimer optical antennas. In: Nanophotonics, Bd. 7, Nr. 3: S. 643-649 [PDF, 959kB]

Molle, Julia; Jakob, Leonhard; Bohlen, Johann; Raab, Mario; Tinnefeld, Philip und Grohmann, Dina (2018): Towards structural biology with super-resolution microscopy. In: Nanoscale, Bd. 10, Nr. 35: S. 16416-16424

Isbaner, Sebastian; Karedla, Narain; Kaminska, Izabela; Ruhlandt, Daja; Raab, Mario; Bohlen, Johann; Chizhik, Alexey; Gregor, Ingo; Tinnefeld, Philip; Enderlein, Jorg und Tsukanov, Roman (2018): Axial Colocalization of Single Molecules with Nanometer Accuracy Using Metal-Induced Energy Transfer. In: Nano Letters, Bd. 18, Nr. 4: S. 2616-2622

Hellenkamp, Björn; Schmid, Sonja; Doroshenko, Olga; Opanasyuk, Oleg; Kühnemuth, Ralf; Adariani, Soheila Rezaei; Ambrose, Benjamin; Aznauryan, Mikayel; Barth, Anders; Birkedal, Victoria; Bowen, Mark E.; Chen, Hongtao; Cordes, Thorben; Eilert, Tobias; Fijen, Carel; Gebhardt, Christian; Götz, Markus; Gouridis, Giorgos; Gratton, Enrico; Ha, Taekjip; Hao, Pengyu; Hanke, Christian A.; Hartmann, Andreas; Hendrix, Jelle; Hildebrandt, Lasse L.; Hirschfeld, Verena; Hohlbein, Johannes; Hua, Boyang; Hübner, Christian G.; Kallis, Eleni; Kapanidis, Achillefs N.; Kim, Jae-Yeol; Krainer, Georg; Lamb, Don C.; Lee, Nam Ki; Lemke, Edward A.; Levesque, Brie; Levitus, Marcia; McCann, James J.; Naredi-Rainer, Nikolaus; Nettels, Daniel; Ngo, Thuy; Qiu, Ruoyi; Robb, Nicole C.; Röcker, Carlheinz; Sanabria, Hugo; Schlierf, Michael; Schröder, Tim; Schuler, Benjamin; Seidel, Henning; Streit, Lisa; Thurn, Johann; Tinnefeld, Philip; Tyagi, Swati; Vandenberk, Niels; Vera, Andres Manuel; Weninger, Keith R.; Wunsch, Bettina; Yanez-Orozco, Inna S.; Michaelis, Jens; Seidel, Claus A. M.; Craggs, Timothy D. und Hugel, Thorsten (2018): Precision and accuracy of single-molecule FRET measurements-a multi-laboratory benchmark study. In: Nature Methods, Bd. 15, Nr. 9: S. 669-676 [PDF, 4MB]

2017

Acuna, Guillermo P. und Tinnefeld, Philip (2017): Molecule detection with sunlight. In: Nature Photonics, Bd. 11, Nr. 10: S. 616-618

Pilo-Pais, Mauricio; Acuna, Guillermo P.; Tinnefeld, Philip und Liedl, Tim (2017): Sculpting light by arranging optical components with DNA nanostructures. In: Mrs Bulletin, Bd. 42, Nr. 12: S. 936-942

Vietz, Carolin; Lalkens, Birka; Acuna, Guillermo P. und Tinnefeld, Philip (2017): Synergistic Combination of Unquenching and Plasmonic Fluorescence Enhancement in Fluorogenic Nucleic Acid Hybridization Probes. In: Nano Letters, Bd. 17, Nr. 10: S. 6496-6500

Ochmann, Sarah E.; Vietz, Carolin; Trofymchuk, Kateryna; Acuna, Guillermo P.; Lalkens, Birka und Tinnefeld, Philip (2017): Optical Nanoantenna for Single Molecule-Based Detection of Zika Virus Nucleic Acids without Molecular Multiplication. In: Analytical Chemistry, Bd. 89, Nr. 23: S. 13000-13007

Zander, Adrian; Willkomm, Sarah; Ofer, Sapir; Wolferen, Marleen van; Egert, Luisa; Buchmeier, Sabine; Stöckl, Sarah; Tinnefeld, Philip; Schneider, Sabine; Klingl, Andreas; Albers, Sonja-Verena; Werner, Finn und Grohmann, Dina (2017): Guide-independent DNA cleavage by archaeal Argonaute from Methanocaldococcus jannaschii. In: Nature Microbiology, Bd. 2, Nr. 6, 17034

2016

Nickels, Philipp C.; Hoiberg, Hans C.; Simmel, Stephanie S.; Holzmeister, Phil; Tinnefeld, Philip und Liedl, Tim (2016): DNA Origami Seesaws as Comparative Binding Assay. In: ChemBioChem, Bd. 17, Nr. 12: S. 1093-1096

Nickels, Philipp C.; Wünsch, Bettina; Holzmeister, Phil; Bae, Wooli; Kneer, Luisa M.; Grohmann, Dina; Tinnefeld, Philip und Liedl, Tim (2016): Molecular force spectroscopy with a DNA origami-based nanoscopic force clamp. In: Science, Bd. 354, Nr. 6310: S. 305-307

2014

Gietl, Andreas; Holzmeister, Phil; Blombach, Fabian; Schulz, Sarah; Voithenberg, Lena Voith von; Lamb, Don C.; Werner, Finn; Tinnefeld, Philip und Grohmann, Dina (2014): Eukaryotic and archaeal TBP and TFB/TF(II)B follow different promoter DNA bending pathways. In: Nucleic Acids Research, Bd. 42, Nr. 10: S. 6219-6231 [PDF, 1MB]

2011

Cordes, Thorben; Maiser, Andreas; Steinhauer, Christian; Schermelleh, Lothar und Tinnefeld, Philip (2011): Mechanisms and advancement of antifading agents for fluorescence microscopy and single-molecule spectroscopy. In: Phys. Chem. Chem. Phys., Bd. 13: S. 6699-6709 [PDF, 2MB]

2010

Spalthoff, Christian; Egelhaaf, Martin; Tinnefeld, Philip und Kurtz, Rafael (2010): Localized direction selective responses in the dendrites of visual interneurons of the fly. In: BMC Biology 8:36 [PDF, 2MB]

Diese Liste wurde am Sat Nov 23 19:28:39 2024 CET erstellt.