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Subhamoy Mahajan
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Year
Polyethylenimine–DNA Ratio Strongly Affects Their Nanoparticle Formation: A Large-Scale Coarse-Grained Molecular Dynamics Study
S Mahajan, T Tang
The Journal of Physical Chemistry B 123 (45), 9629-9640, 2019
132019
Erratum:“Martini Coarse‐Grained Model for Polyethylenimine”[J. Comput. Chem. 2019, 40, 607–618, DOI: 10.1002/jcc. 25747]
S Mahajan, T Tang
Journal of Computational Chemistry 41 (18), 1730-1734, 2020
12*2020
Martini coarse‐grained model for polyethylenimine
S Mahajan, T Tang
Journal of computational chemistry 40 (3), 607-618, 2019
122019
Polyethylenimine–DNA Nanoparticles under Endosomal Acidification and Implication to Gene Delivery
S Mahajan, T Tang
Langmuir 38 (27), 8382-8397, 2022
62022
Low cost autonomous navigation and control of a mechanically balanced bicycle with dual locomotion mode
A Pandey, S Mahajan, A Kosta, D Yadav, V Pandey, S Sahay, S Jha, ...
2015 IEEE International Transportation Electrification Conference (ITEC), 1-10, 2015
52015
Meeting Experiments at the Diffraction Barrier with In Silico Fluorescence Microscopy
S Mahajan, T Tang
ACS Photonics, 2022
22022
Comment on “Martini force field for protonated polyethyleneimine”
S Mahajan, T Tang
Journal of Computational Chemistry 42 (4), 261-263, 2021
12021
Automated Parameterization of Coarse-Grained Polyethylenimine Under Martini Framework
S Mahajan, T Tang
ChemRxiv, 2022
2022
Automated Coarse-Graining of Polyethylenimine for Simulation in Biomedicine
S Mahajan, T Tang
2022
Molecular Map of DNA-Polyethylenimine Nanoparticle Dissociation Under Endosomal Acidification
S Mahajan, T Tang
Biophysical Journal 120 (3), 177a, 2021
2021
Meeting experiments at the diffraction barrier: an in-silico widefield fluorescence microscopy
S Mahajan, T Tang
bioRxiv, 2021
2021
Coarse-Grained Simulation of DNA-Polyethylenimine Aggregation at Endosomal pH: Implications to Nanoparticle Dissociation
S Mahajan, T Tang
Biophysical Journal 118 (3), 296a, 2020
2020
Supporting information for “Meeting experiments at the diffraction barrier: an in-silico widefield fluorescence microscopy”
S Mahajan, T Tang
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Articles 1–13