| Title | Research Area | Implementing Organisations | Funding Organisations | Start Year | Status |
|---|---|---|---|---|---|
| Organocatalytic asymmetric Vinylogous reactions: an enantioselective approach to chiral functionalized organic molecules | Chemical Sciences | Guru Nanak Dev University | Department of Science & Technology | 2016 | Completed |
| Organo and amino phosphorus (V) derived polar ordered metal organic structures as ferroelectric materials | Chemical Sciences | Indian Institute of Science | Department of Science & Technology | 2016 | Completed |
| Development of chiral single molcule magnets | Chemical Sciences | Tezpur University | Department of Science & Technology | 2016 | Completed |
| Development of Cu-catalyzed cascade synthesis of N-heterocycles | Chemical Sciences | Rajiv Gandhi University | Department of Science & Technology | 2016 | Completed |
| Nucleophilic Intercepted meyer-schuster rearrangement: design and development of new approaches to Bio-active natural products | Chemical Sciences | Indian Institute of Technology (IIT) | Department of Science & Technology | 2016 | Completed |
| Novel strategy to generate drug like Marine natural product library to discocer bioactive compounds | Chemical Sciences | Indian Institute of Integrative Medicine (IIIM) | Department of Science & Technology | 2016 | Completed |
| Novel Magnetically separable 2D graphitic carbon nitride nanocomposite for phtocatalytic degradation of dyes for environmental remediation of textile industry effluent | Chemical Sciences | North Eastern Hill University | Department of Science & Technology | 2016 | Completed |
| Novel hybrid multifictional materials from protein polymer surfactant and liquid crystal droplets | Chemical Sciences | Indian Institute of Technology (IIT), Bombay | Department of Science & Technology | 2016 | Completed |
| Development of new Synthetic methodologies for the toal synthesis of bioactive compounds | Chemical Sciences | Thapar University, Patiala | Department of Science & Technology | 2016 | Completed |
| Development of novel cationic electrocyclization precusosors and application in the synthesis of highly substituted Cyclopentenes/Indenes | Chemical Sciences | Institute of Chemical Technology | Department of Science & Technology | 2016 | Completed |