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Asim Bhaumik
Researcher at Indian Association for the Cultivation of Science
Publications - 520
Citations - 20876
Asim Bhaumik is an academic researcher from Indian Association for the Cultivation of Science. The author has contributed to research in topics: Catalysis & Mesoporous material. The author has an hindex of 69, co-authored 466 publications receiving 16882 citations. Previous affiliations of Asim Bhaumik include Guru Nanak Institute of Technology & Bhabha Atomic Research Centre.
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Journal ArticleDOI
High–throughput Acid-Base Tandem Organocatalysis over Hollow Tube-Shaped Porous Polymers and Carbons
Arindam Modak,Asim Bhaumik +1 more
TL;DR: A FeCl3 mediated polymerization of 4-tritylaniline with dimethoxymethane (DMM) at 80 oC resulted the formation of hollow tube shaped porous polymers, which can be transformed into microflowers and larger hollow tubes (bamboo shaped) by increasing the amount of DMM during the synthesis as discussed by the authors.
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A new application of rhodanine as a green sulfur transferring agent for a clean functional group interconversion of amide to thioamide using reusable MCM-41 mesoporous silica
TL;DR: In this article, a novel thionation protocol for amide compounds, with the system rhodanine/secondary amine has been discovered, using MCM-41 mesoporous silica as an acid catalyst.
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Plasmonic gold deposited on mesoporous TixSi1−xO2 with isolated silica in lattice: An excellent photocatalyst for photocatalytic conversion of CO2 into methanol under visible light irradiation
Rajkumar Yadav,Rajkumar Yadav,Rajkumar Yadav,Vipin Amoli,Vipin Amoli,Jitendra Kumar Singh,Jitendra Kumar Singh,Manish Kumar Tripathi,Manish Kumar Tripathi,Piyali Bhanja,Asim Bhaumik,Anil K. Sinha,Anil K. Sinha,Anil K. Sinha +13 more
TL;DR: In this paper, gold nanoparticles were deposited on mesoporous titania with isolated Si sites, which converted CO2 into methanol under visible light irradiation using LED light source.
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Synthesis and mesophase characterisation of a series of new triazine-based disc-shaped molecules
TL;DR: A series of symmetrical disc-shaped materials with a heteroaromatic 1,3,5-s-triazine core and nine alkoxy chains at the peripheral position has been designed and synthesized in a simplified way as mentioned in this paper.
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CO2 hydrogenation over functional nanoporous polymers and metal-organic frameworks.
TL;DR: In this paper, the state-of-the-art developments in POPs/COFs/MOFs having unique functionalities and topologies in stabilizing metallic NPs and molecular complexes for the CO2 reduction reactions are discussed.