Ravindra D Mule
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Explore the profile of Ravindra D Mule including associated specialties, affiliations and a list of published articles.
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7
Citations
15
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Recent Articles
1.
Mule R, Kumar A, Sancheti S, Senthilkumar B, Kumar H, Patil N
Chem Sci
. 2022 Nov;
13(36):10779-10785.
PMID: 36320699
Immunogenic Cell Death (ICD) is a unique cell death mechanism that kills cancer cells while rejuvenating the anticancer immunosurveillance, thereby benefiting the clinical outcomes of various immuno-chemotherapeutic regimens. Herein, we...
2.
Mule R, Roy R, Mandal K, Chopra D, Dutta T, Sancheti S, et al.
Chemistry
. 2022 Apr;
28(38):e202200632.
PMID: 35429368
Recently, the concept of anion-π interactions has witnessed unique applications in the field of AIEgen development. In this contribution, we disclose a consolidated study of a library of N-doped ionic...
3.
Banerjee S, Ambegave S, Mule R, Senthilkumar B, Patil N
Org Lett
. 2020 Jun;
22(12):4792-4796.
PMID: 32510962
By applying the "interplay" mode, which consolidates two key reactivity modes of gold catalysis, namely π-activation mode and cross-coupling mode, the first alkynylative Meyer-Schuster rearrangement is designed and successfully implemented....
4.
Gharat S, Shinde B, Mule R, Punekar S, Dholakia B, Jayaramaiah R, et al.
Planta
. 2019 Dec;
251(1):28.
PMID: 31802261
Exploration with high-throughput transcriptomics and metabolomics of two varieties of Ceropegia bulbosa identifies candidate genes, crucial metabolites and a potential cerpegin biosynthetic pathway. Ceropegia bulbosa is an important medicinal plant,...
5.
Shaikh A, Banerjee S, Mule R, Bera S, Patil N
J Org Chem
. 2019 Mar;
84(7):4120-4130.
PMID: 30813732
An interesting case of external oxidant-controlled reactivity switch leading to a divergent set of ionic nitrogen-doped polycyclic aromatic hydrocarbons (N-doped PAHs), is presented here, which is quite unrecognized in copper-mediated...
6.
Shaikh A, Varma M, Mule R, Banerjee S, Kulkarni P, Patil N
J Org Chem
. 2019 Jan;
84(4):1766-1777.
PMID: 30638382
We recently developed an oxidative intramolecular 1,2-amino-oxygenation reaction, combining gold(I)/gold(III) catalysis, for accessing structurally unique ionic pyridinium-oxazole dyads (PODs) with tunable emission wavelengths. On further investigation, these fluorophores turned out...
7.
Mule R, Shaikh A, Gade A, Patil N
Chem Commun (Camb)
. 2018 Oct;
54(84):11909-11912.
PMID: 30283940
Reported herein, for the first time, is a copper-promoted intramolecular [4+2]-cycloaddition cascade to access ionic N-doped polycyclic aromatic hydrocarbons (PAHs) with tunable emission wavelengths. It is shown that the reaction...