Two-dimensional nanoarchitectonics: organic and hybrid materials T Govindaraju, MB Avinash Nanoscale 4 (20), 6102-6117, 2012 | 151 | 2012 |
Covalent modification and exfoliation of graphene oxide using ferrocene MB Avinash, KS Subrahmanyam, Y Sundarayya, T Govindaraju Nanoscale 2 (9), 1762-1766, 2010 | 117 | 2010 |
Architectonics: design of molecular architecture for functional applications MB Avinash, T Govindaraju Accounts of chemical research 51 (2), 414-426, 2018 | 106 | 2018 |
Amino acid derivatized arylenediimides: a versatile modular approach for functional molecular materials MB Avinash, T Govindaraju Advanced materials 24 (29), 3905-3922, 2012 | 101 | 2012 |
A supramolecular gel from a quadruple zwitterion that responds to both acid and base. Y Hisamatsu, S Banerjee, MB Avinash, T Govindaraju, C Schmuck Angewandte Chemie 125 (48), 2013 | 97 | 2013 |
Nanoarchitectonics of biomolecular assemblies for functional applications MB Avinash, T Govindaraju Nanoscale 6 (22), 13348-13369, 2014 | 96 | 2014 |
Water-processable, biodegradable and coatable aquaplastic from engineered biofilms AM Duraj-Thatte, A Manjula-Basavanna, NMD Courchesne, GI Cannici, ... Nature chemical biology 17 (6), 732-738, 2021 | 80 | 2021 |
Programmable microbial ink for 3D printing of living materials produced from genetically engineered protein nanofibers AM Duraj-Thatte, A Manjula-Basavanna, J Rutledge, J Xia, S Hassan, ... Nature Communications 12 (https://www.nature.com/articles/s41467-0), 6600, 2021 | 77 | 2021 |
Programmable Microbial Ink for 3D Printing of Living Materials Produced from Genetically Engineered Protein Nanofibers AM Duraj-Thatte, AM Basavanna, J Rutledge, J Xia, S Hassan, A Sourlis, ... bioRxiv, 2021 | 77 | 2021 |
Engineering molecular organization of naphthalenediimides: large nanosheets with metallic conductivity and attoliter containers MB Avinash, T Govindaraju Advanced Functional Materials 21 (20), 3875-3882, 2011 | 76 | 2011 |
Chiral transcription and retentive helical memory: probing peptide auxiliaries appended with naphthalenediimides for their one-dimensional molecular organization. M Pandeeswar, MB Avinash, T Govindaraju Chemistry (Weinheim an der Bergstrasse, Germany) 18 (16), 4818-4822, 2012 | 72 | 2012 |
A bio-inspired design strategy: Organization of tryptophan-appended naphthalenediimide into well-defined architectures induced by molecular interactions MB Avinash, T Govindaraju Nanoscale 3 (6), 2536-2543, 2011 | 64 | 2011 |
Self‐Cleaning Functional Molecular Materials MB Avinash, E Verheggen, C Schmuck, T Govindaraju Angewandte Chemie 41 (124), 10470-10474, 2012 | 56 | 2012 |
Molecular architectonics of naphthalenediimides for efficient structure–property correlation MB Avinash, K Swathi, KS Narayan, T Govindaraju ACS Applied Materials & Interfaces 8 (13), 8678-8685, 2016 | 54 | 2016 |
Repurposing bacterial extracellular matrix for selective and differential abstraction of rare earth elements PKR Tay, A Manjula-Basavanna, NS Joshi Green Chemistry 20 (15), 3512-3520, 2018 | 45 | 2018 |
1, 2-, 1, 3-and 1, 4-Cyclohexanedicarboxylates of Cd and Mn with chain and layered structures A Thirumurugan, MB Avinash, CNR Rao Dalton Transactions, 221-228, 2006 | 45 | 2006 |
Bioinspired reductionistic peptide engineering for exceptional mechanical properties MB Avinash, D Raut, MK Mishra, U Ramamurty, T Govindaraju Scientific Reports 5 (1), 16070, 2015 | 37 | 2015 |
Exploring hydrogen bonding and weak aromatic interactions induced assembly of adenine and thymine functionalised naphthalenediimides N Narayanaswamy, MB Avinash, T Govindaraju New Journal of Chemistry 37 (5), 1302-1306, 2013 | 34 | 2013 |
Robust Self‐Regeneratable Stiff Living Materials Fabricated from Microbial Cells A Manjula‐Basavanna, AM Duraj‐Thatte, NS Joshi Advanced functional materials 31 (19), 2010784, 2021 | 33 | 2021 |
Hybrid Living Capsules Autonomously Produced by Engineered Bacteria DP Birnbaum, AM Basavanna, A Kan, BL Tardy, NS Joshi Advanced Science 8 (11), 2004699, 2021 | 26 | 2021 |