top of page
GG LAB logo final.png

Welcome to Supra-poly-chem Lab...

Journals

2025

lmsa_a_2471852_uf0001_c.jpg
TOC-1024x1024.png
Toc_f-1013x1024.jpg
anie202421536-toc-0001-m.jpg

2024

1-s2.0-S0167732224025650-ga1_lrg.jpg

(26) S. Mahapatra, P. Dey, G. Ghosh,* "Controlled Synthesis of Cylindrical Micelles via Crystallization-driven Self-assembly (CDSA) and Applications" Polymer Journal, 2024, 56, 949–975. (Invited article under Special issue: Rising Stars in Polymer Science 2024)

2023

(24) G. Ghosh,* “Pathway Dependent Controlled Supramolecular Polymerization of Peptides” Giant, 14, 2023, 100160.

Before Joining CeNS

2023

(23) B. Matarranz, S. Díaz-Cabrera, G. Ghosh, B. Soberats, M. García-Valverde, R. Quesada., G. Fernández, “Anticooperative Supramolecular Oligomerization Mediated by V-Shaped Monomer Design and Unconventional Hydrogen Bonds” Angew. Chem. Int. Ed. 2023, 62, e202218555.

2022

(22) U. Ghosh, G. Ghosh,* “Naturally occurring cyclic peptides as HDAC inhibitors” Acta Scientific Pharmaceutical Sciences 2022, 6, 01-02. (Editorial Article)

(21) G. Ghosh, A. Chakraborty, P. Pal, B. Jana, S. Ghosh, “Direct Participation of Solvent Molecules in the Formation of Supramolecular Polymers” Chem. Eur. J. 2022, 28, e202201082.

(20) G. Ghosh,* R. Barman, A. Mukherjee, U. Ghosh, S. Ghosh, G. Fernández, “Control over multiple Nano- and Secondary Structures in Peptide Self-Assembly” Angew. Chem. Int. Ed. 2022, 61, e202113403.

(19) Y. Dorca, C. Naranjo, G. Ghosh, B. Soberats, J. Calbo, E. Ortí, G. Fernández, L. Sánchez, “Supramolecular polymerization of electronically complementary linear motifs: Anti-cooperativity by attenuated growth” Chem. Sci. 2022, 13, 81-89.

2021

(18) G. Ghosh,* “Control Over Peptide Based Nanostructures for Biomedical Applications” Acta Scientific Pharmaceutical Sciences 2021, 5, 01. (Editorial Article)

(17) B. Matarranz, G. Ghosh, R. Kandanelli, A. Sampedro, K. K. Kartha, G. Fernández, “Understanding the role of conjugation length on the self-assembly behaviour of oligophenyleneethynylenes” Chem. Commun. 2021, 57, 4890-4893.

(16) C. Naranjo, Y. Dorca, G. Ghosh, R. Gómez, G. Fernández, L. Sánchez, “Chain-capper effect to bias the amplification of asymmetry in supramolecular polymers” Chem. Commun. 2021, 57, 4500 - 4503.

(15) G. Ghosh,* K. K. Kartha, G. Fernández, “Tuning the Mechanistic Pathways of Peptide Self-assembly by Aromatic Interactions” Chem. Commun. 2021, 57, 1603-1606. [Hot Article]

(14) I. Helmers, G. Ghosh, R. Q. Albuquerque, G. Fernández, “Pathway and Length Control of Supramolecular Polymers in Aqueous Media via a Hydrogen Bonding Lock” Angew. Chem. Int. Ed. 2021, 60, 4368-4376.

2020

(13) G. Ghosh,* G. Fernández “pH- and concentration-dependent supramolecular self-assembly of a naturally occurring octapeptide” Beilstein J. Org. Chem. 2020, 16, 2017–2025.

(12) G. Ghosh, P. Dey, S. Ghosh “Controlled Supramolecular Polymerization of π-Systems” Chem. Commun. 2020, 56, 6757-6769.

(11) G. Ghosh, T. Ghosh, G. Fernández “Controlled supramolecular polymerization of d8 metal complexes through pathway complexity and seeded growth” ChemPlusChem 2020, 85, 1022–1033.

(10) Y. Dorca, C. Naranjo, G. Ghosh, R. Gómez, G. Fernández, L. Sánchez “Unconventional chiral amplification in luminescent supramolecular polymers based on trisbiphenylamine-tricarboxamides” Organic Materials 2020, 2, 41-46.

(9) E. E. Greciano, S. Alsina, G. Ghosh, G. Fernández, Luis Sánchez “Alkyl bridge length to bias the kinetics and stability of consecutive supramolecular polymerizations” Small Methods 2020, 4, 1900715.

2019

(8) A. Chakraborty,‡ G. Ghosh,‡ D. S. Pal, S. Varghese, S. Ghosh “Organobase Triggered Controlled Supramolecular Ring Opening Polymerization and 2D-Assembly” Chem. Sci. 2019, 10, 7345-7351. (‡Equal contribution) [Hot Article]

(7) G. Ghosh,* R. Barman, J. Sarkar, S. Ghosh “pH-Responsive Biocompatible Supramolecular Peptide Hydrogel” J. Phys. Chem. B 2019, 123, 5909−5915.

2018

(6) W. Matsuda, T. Sakurai, G. Ghosh, S. Ghosh, S. Seki “Transient Optical–Microwave Spectroscopy for Electron Mobility Assessment in Solids and Gels: A Comprehensive Approach” J. Photopolym. Sci. Tech. 2018, 31, 91–99.

(5) G. Ghosh, S. Ghosh “Solvent Dependent Pathway Complexity and Seeded Supramolecular Polymerization” Chem. Commun. 2018, 54, 5720-5723.

(4) G. Ghosh, M. Paul, T. Sakurai, W. Matsuda, S. Seki, S. Ghosh “Supramolecular chirality issues in unorthodox naphthalene diimide gelators” Chem. Eur. J. 2018, 24, 1938-1946.

WhatsApp Image 2025-05-24 at 10.54.59 AM.jpeg

2017

(3) H. Karϯ, G. Ghoshϯ, S. Ghosh “Solvent Geometry Regulated Cooperative Supramolecular Polymerization” Chem. Eur. J. 2017, 23, 10536 – 10542 (ϯEqual contribution).

2014

(2) G. Ghosh, D. K. Mandal “Novel unfolding sequence of banana lectin: folded, unfolded and natively unfolded-like monomeric states in guanidine hydrochloride” Biochimie 2014, 99, 138-145.

2012

(1) G. Ghosh, D. K. Mandal “Differing structural characteristics of molten globule intermediate of peanut lectin in urea and guanidine-HCl” International Journal of Biological Macromolecules 2012, 51, 188–195.

bottom of page