Researcher Portfolio

 
   

Chen, Qiang

Dept. Müllen: Synthetic Chemistry, MPI for Polymer Research, Max Planck Society, Organic and Carbon Nanomaterials Unit, Okinawa Institute of Science and Technology Graduate University, Okinawa, Japan, Soochow Univ, Inst Funct Nano & Soft Mat FUNSOM, Jiangsu Key Lab Carbon Based Funct Mat & Devices, Joint Int Res Lab Carbon Based Funct Mat & Device, Jiangsu,China  

 

Researcher Profile

 
Position: Dept. Müllen: Synthetic Chemistry, MPI for Polymer Research, Max Planck Society
Position: Organic and Carbon Nanomaterials Unit, Okinawa Institute of Science and Technology Graduate University, Okinawa, Japan
Position: Soochow Univ, Inst Funct Nano & Soft Mat FUNSOM, Jiangsu Key Lab Carbon Based Funct Mat & Devices, Joint Int Res Lab Carbon Based Funct Mat & Device, Jiangsu,China
Researcher ID: https://pure.mpg.de/cone/persons/resource/persons208840

External references

 

Publications

 
  (1 - 25 of 37)
 : Gu, Y., Xiang, F., Liang, Y., Bai, P., Qiu, Z., Chen, Q., Narita, A., Xie, Y., Fasel, R., & Müllen, K. (2025). A Poly(2,7‐anthrylene) withperi‐Fused Porphyrin Edges. Angewandte Chemie International Edition, 64(4): e202417129. doi:10.1002/anie.202417129. [PubMan] : Yang, Q., Failla, A. V., Turunen, P., Mateos Maroto, A., Gai, M., Zuschratter, W., Westendorf, S., Gelléri, M., Chen, Q., Goudappagouda, H., Zhao, H., Zhu, X., Morsbach, S., Scheele, M., Yan, W., Landfester, K., Kabe, R., Bonn, M., Narita, A., & Liu, X. (2025). Reactivatable stimulated emission depletion microscopy using fluorescence-recoverable nanographene. Nature Communications, 16: 1341. doi:10.1038/s41467-025-56401-z. [PubMan] : Garcia-Orrit, S., Vega-Mayoral, V., Chen, Q., Serra, G., Guizzardi, M., Romano, V., Dal Conte, S., Cerullo, G., Di Mario, L., Kot, M., Loi, M. A., Narita, A., Müllen, K., Müllen, K., Tommasini, M., & Cabanillas-González, J. (2024). Visualizing Thermally Activated Conical Intersections Governing Non-Radiative Triplet Decay in a Ni(II) Porphyrin-Nanographene Conjugate with Variable Temperature Transient Absorption Spectroscopy. The Journal of Physical Chemistry Letters, 15(41), 10366-10374. doi:10.1021/acs.jpclett.4c02712. [PubMan] : Chen, Q., Lodi, A., Zhang, H., Gee, A., Wang, H. I., Kong, F., Clarke, M., Edmondson, M., Hart, J., O’Shea, J. N., Stawski, W., Baugh, J., Narita, A., Saywell, A., Bonn, M., Müllen, K., Bogani, L., & Anderson, H. L. (2024). Porphyrin-fused graphene nanoribbons. Nature Chemistry, 16, 1133 -1140. doi:10.1038/s41557-024-01477-1. [PubMan] : Zhu, X., Chen, Q., Zhao, H., Yang, Q., Goudappagouda, Gelléri, M., Ritz, S., Ng, D., Koynov, K., Parekh, S. H., Chetty, V. K., Thakur, B. K., Cremer, C., Landfester, K., Müllen, K., Terenzio, M., Bonn, M., Narita, A., & Liu, X. (2024). Intrinsic Burst-Blinking Nanographenes for Super-Resolution Bioimaging. Journal of the American Chemical Society, 146(8), 5195-5203. doi:10.1021/jacs.3c11152. [PubMan] : Chen, Q., Giovannantonio, M. D., Eimre, K., Urgel, J. I., Ruffieux, P., Pignedoli, C. A., Müllen, K., Fasel, R., & Narita, A. (2023). On-Surface Interchain Coupling and Skeletal Rearrangement of Indenofluorene Polymers. Macromolecular Chemistry and Physics, 224(24): 2300345. doi:10.1002/macp.202300345. [PubMan] : Garcia-Orrit, S., Vega-Mayoral, V., Chen, Q., Serra, G., Paternò, G. M., Cánovas, E., Narita, A., Müllen, K., Tommasini, M., & Cabanillas-González, J. (2023). Nanographene-Based Decoration as a Panchromatic Antenna for Metalloporphyrin Conjugates. Small, 19(42): 2301596. doi:10.1002/smll.202301596. [PubMan] : Biswas, K., Soler, D., Mishra, S., Chen, Q., Yao, X., Sánchez-Grande, A., Eimre, K., Mutombo, P., Martín-Fuentes, C., Lauwaet, K., Gallego, J. M., Ruffieux, P., Pignedoli, C. A., Müllen, K., Miranda, R., Urgel, J. I., Narita, A., Fasel, R., Jelínek, P., & Écija, D. (2023). Steering Large Magnetic Exchange Coupling in Nanographenes near the Closed-Shell to Open-Shell Transition. The Journal of Organic Chemistry, 145(5), 2968-2974. doi:10.1021/jacs.2c11431. [PubMan] : Björk, D. J., Sánchez-Sánchez, D. C., Chen, Q., Pignedoli, D. C. A., Rosen, P. J., Ruffieux, D. P., Feng, P. X., Narita, A., Müllen, K., & Fasel, P. R. (2022). The Role of Metal Adatoms in a Surface-Assisted Cyclodehydrogenation Reaction on a Gold Surface. Angewandte Chemie International Edition, 61(49): e202212354. doi:10.1002/anie.202212354. [PubMan] : Jin, E., Fu, S., Hanayama, H., Addicoat, M. A., Wei, W., Chen, Q., Graf, R., Landfester, K., Bonn, M., Zhang, K. A. I., Wang, H. I., Müllen, K., & Narita, A. (2022). A Nanographene-Based Two-Dimensional Covalent Organic Framework as a Stable and Efficient Photocatalyst. Angewandte Chemie International Edition, 61(5): e202114059. doi:10.1002/anie.202114059. [PubMan] : Paterno, G. M., Chen, Q., Munoz-Marmol, R., Guizzardi, M., Bonal, V., Kabe, R., Barker, A. J., Boj, P. G., Chatterjee, S., Ie, Y., Villalvilla, J. M., Quintana, J. A., Scotognell, F., Müllen, K., Diaz-Garcia, M. A., Narita, A., & Lanzani, G. (2022). Excited states engineering enables efficient near-infrared lasing in nanographenes. Materials Horizons, 9(1), 393-402. doi:10.1039/d1mh00846c. [PubMan] : Paterno, G. M., Goudappagouda, Chen, Q., Lanzani, G., Scotognella, F., & Narita, A. (2021). Large Polycyclic Aromatic Hydrocarbons as Graphene Quantum Dots: from Synthesis to Spectroscopy and Photonics. Advanced Optical Materials, 9(23): 2100508. doi:10.1002/adom.202100508. [PubMan] : Jin, E., Yang, Q., Ju, C.-W., Chen, Q., Landfester, K., Bonn, M., Müllen, K., Liu, X., & Narita, A. (2021). A Highly Luminescent Nitrogen-Doped Nanographene as an Acid- and Metal-Sensitive Fluorophore for Optical Imaging. Journal of the American Chemical Society, 143(27), 10403-10412. doi:10.1021/jacs.1c04880. [PubMan] : Chen, Q., Baumgarten, M., Wagner, M., Hu, Y., Hou, I.-C.-Y., Narita, A., & Müllen, K. (2021). Dicyclopentaannelated Hexa-peri-hexabenzocoronenes with a Singlet Biradical Ground State. Angewandte Chemie International Edition, 60(20), 11300-11304. doi:10.1002/anie.202102932. [PubMan] : Mishra, S., Yao, X., Chen, Q., Eimre, K., Gröning, O., Ortiz, R., Di Giovannantonio, M., Sancho-Garcia, J. C., Fernandez-Rossier, J., Pignedoli, C. A., Müllen, K., Ruffieux, P., Narita, A., Fasel, R., & R (2021). Large magnetic exchange coupling in rhombus-shaped nanographenes with zigzag periphery. Nature Chemistry, 13, 581-586. doi:10.1038/s41557-021-00678-2. [PubMan] : Chen, Q. (2021). Bottom-up syntheses of zigzag-edged nanographenes and nanographene-porphyrin conjugates. PhD Thesis, Johannes Gutenberg-Universität, Mainz. [PubMan] : Di Giovannantonio, M., Chen, Q., Urgel, J. I., Ruffieux, P., Pignedoli, C. A., Müllen, K., Narita, A., & Fasel, R. (2020). On-Surface Synthesis of Oligo(indenoindene). Journal of the American Chemical Society, 142(30), 12925-12929. doi:10.1021/jacs.0c05701. [PubMan] : Chen, Q., Narita, A., Müllen, K., Parekh, S. H., Bonn, M., & Liu, X.(2020). Hydrophilic and particularly water soluble DBOV-Derivatives. [PubMan] : Liu, X., Chen, S.-Y., Chen, Q., Yao, X., Gelleri, M., Ritz, S., Kumar, S., Cremer, C., Landfester, K., Müllen, K., Parekh, S. H., Narita, A., & Bonn, M. (2020). Nanographenes: Ultrastable, Switchable, and Bright Probes for Super-Resolution Microscopy. Angewandte Chemie International Edition, 59(1), 496-502. doi:10.1002/anie.201909220. [PubMan] : Liu, X., Chen, S.-Y., Chen, Q., Yao, X., Gelleri, M., Ritz, S., Kumar, S., Cremer, C., Landfester, K., Müllen, K., Parekh, S. H., Narita, A., & Bonn, M. (2020). Nanographene: ultrastabile, schaltbare und helle Sonden für die hochauflösende Mikroskopie. Angewandte Chemie, 132(1), 504-510. doi:10.1002/ange.201909220. [PubMan] : Chang, H., Liu, H., Dmitrieva, E., Chen, Q., Ma, J., He, P., Liu, P., Popov, A. A., Cao, X.-Y., Wang, X.-Y., Zou, Y., Narita, A., Müllen, K., Peng, H., & Hu, Y. (2020). Furan-containing double tetraoxa[7]helicene and its radical cation. Chemical Communications, 56(96), 15181-15184. doi:10.1039/d0cc06970a. [PubMan] : Xu, X., Chen, Q., & Narita, A. (2020). Synthesis and Characterization of Dibenzo[hi,st]ovalene as a Highly Fluorescent Polycyclic Aromatic Hydrocarbon and Its ᴨ-Extension to Circumpyrene. Journal of Synthetic Organic Chemistry, Japan, 78(11), 1094-1104. doi:10.5059/yukigoseikyokaishi.78.1094. [PubMan] : Chen, Q., Schollmeyer, D., Müllen, K., & Narita, A. (2019). Synthesis of Circumpyrene by Alkyne Benzannulation of Brominated Dibenzo[hi,st]ovalene. Journal of the American Chemical Society, 141(51), 19994-19999. doi:10.1021/jacs.9b10957. [PubMan] : Chen, Q., Thoms, S., Stöttinger, S., Schollmeyer, D., Müllen, K., Narita, A., & Basche, T. (2019). Dibenzo[hi,st]ovalene as Highly Luminescent Nanographene: Efficient Synthesis via Photochemical Cyclodehydroiodination, Optoelectronic Properties, and Single-Molecule Spectroscopy. Journal of the American Chemical Society, 141(41), 16439-16449. doi:10.1021/jacs.9b08320. [PubMan] : Chen, Q., Wang, D., Baumgarten, M., Schollmeyer, D., Müllen, K., & Narita, A. (2019). Regioselective Bromination and Functionalization of Dibenzo[hi,st]ovalene as Highly Luminescent Nanographene with Zigzag Edges. Chemistry – An Asian Journal, 14(10), 1703-1707. doi:10.1002/asia.201801822. [PubMan]