Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Atul D. Parab"'
Publikováno v:
Journal of materials chemistry. B. 10(31)
The non-destructive functionalisation of graphene in aqueous media is a critical process with the potential to enhance the versatility of the 2D nanosheet material as a technological enabler. This could also unlock strategies for a wider uptake of gr
Autor:
Atul D. Parab, Tiffany R. Walsh, Marc R. Knecht, Rahul Rao, Rohan Dureja, Rajesh R. Naik, Joseph M. Slocik
Publikováno v:
Langmuir. 37:1152-1163
Bio-inspired approaches represent potentially transformational methods to fabricate and activate non-natural materials for applications ranging from biomedical diagnostics to energy harvesting platforms. Recently, bio-based methods for the exfoliatio
Autor:
Akin Budi, Rahul Rao, Tiffany R. Walsh, Rajesh R. Naik, Marc R. Knecht, Atul D. Parab, Joseph M. Slocik
Publikováno v:
The Journal of Physical Chemistry C. 124:2219-2228
The ability to exfoliate graphene in aqueous systems is critical for many applications. Peptide/materials recognition offers a multipurpose strategy for realizing such exfoliation and also organiza...
Autor:
Nermina Brljak, Atul D. Parab, Rajesh R. Naik, Marc R. Knecht, Joseph M. Slocik, Rahul Rao, Tiffany R. Walsh
Publikováno v:
Chemical Communications. 56:8834-8837
Nanosheet heterostructures offer emergent optical/electronic properties. These could be achieved using selective materials binding peptides, but lack of understanding of selectivity impedes advancement. Here we examine peptides with affinity for grap
Autor:
Marc R. Knecht, Joseph M. Slocik, Elise C. Bell, Catherine J. Munro, Atul D. Parab, Joshua L. Cohn, Dharmendra Shukla
Publikováno v:
Nanoscale Advances. 1:2857-2865
Copper sulfide materials have diverse applications from cancer therapy to environmental remediation due to their narrow bandgap and easily tuned plasmon. The synthesis of these materials often involves toxic reagents and harsh conditions where biomim
Publikováno v:
ACS Applied Nano Materials. 1:7149-7158
Here we present the use of a well-known materials binding peptide for the generation of highly catalytically reactive Rh nanoplates. To this end, the A3 peptide, originally isolated with affinity f...
Publikováno v:
Advanced Materials Interfaces. 8:2001659