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Education and qualifications (3)

Monash University: Melbourne, AU

2023-04 to present | PhD (School of Chemistry)
Education
Source: Self-asserted source
Alisha Debas

Japan Advanced Institute of Science and Technology: Nomi Shi, Ishikawa, JP

2019 to 2021-09-24 | Masters in Chemistry (School of Materials science)
Education
Source: Self-asserted source
Alisha Debas

University of Delhi: New Delhi, Delhi, IN

2015 to 2018 | Chemistry Honours
Qualification
Source: Self-asserted source
Alisha Debas

Works (7)

Enhancing Gelatine Hydrogel Robustness with Sacran-Aldehyde: A Natural Cross-Linker Approach

Polysaccharides
2024-08-01 | Journal article
Contributors: Maninder Singh; Alisha Debas; Gargi Joshi; Maiko Kaneko Okajima; Robin Rajan; Kazuaki Matsumura; Tatsuo Kaneko
Source: check_circle
Crossref
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Preferred source (of 2)‎

Enhancing Gelatine Hydrogel Robustness with Sacran-aldehyde: A Natural Crosslinker Approach

2024-07-09 | Preprint
Contributors: Maninder Singh; Alisha Debas; Gargi Joshi; Maiko Kaneko Okajima; Robin Rajan; Kazuaki Matsumura; Tatsuo Kaneko
Source: check_circle
Crossref

Polyethylene-glycol-modified zwitterionic polymer assisted protein aggregation arrest and refolding

Molecular Systems Design & Engineering
2022-07-05 | Journal article
Part of ISSN: 2058-9689
Source: Self-asserted source
Alisha Debas

Efficiency of polyethylene glycol (PEG) based poly-sulphobetaine for inhibition of heat-induced lysozyme aggregation

Japanese Biomaterial Society, Hokushinetsu branch
2021 | Conference abstract
Source: Self-asserted source
Alisha Debas

Role of zwitterionic polymers for protein denaturation protection and renaturation

The Society of Polymer Science, Japan
2021 | Conference abstract
Source: Self-asserted source
Alisha Debas

Review of the current state of protein aggregation inhibition from a materials chemistry perspective: special focus on polymeric materials

Materials Advances
2021-01-15 | Journal article
Part of ISSN: 2633-5409
Source: Self-asserted source
Alisha Debas

Synthesis of Zwitterionic Polymers through Reversible-Addition Fragmentation Chain Transfer (RAFT) Polymerization for Protein Aggregation Arrest

30th Annual Meeting of MRS-J
2020 | Conference abstract
Source: Self-asserted source
Alisha Debas