Patents by Inventor Suman Lata
Suman Lata has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
-
Patent number: 12043595Abstract: Method for visible-light driven oxidation of aldehydes to carboxylic acid using carbon dioxide (CO2) as the oxidant in the absence of any catalyst are provided. In the disclosed process, aldehydes, when reacted with CO2 in an organic solvent, either in a batch reactor or in a continuous flow reactor, under conditions of ambient temperature and pressure, using a readily available household LED lamp, yield corresponding carboxylic acids along with the formation of carbon monoxide (CO) in the effluent gas.Type: GrantFiled: August 11, 2022Date of Patent: July 23, 2024Assignee: Council of Scientific & Industrial ResearchInventors: Suman Lata Jain, Shafuir Rehman Khan, Vineet Aniya, Alka Kumari, Sandhya Saini, Praveen Kumar Khatri, Anjan Ray
-
Patent number: 11872547Abstract: The present invention relates to a novel method for photocatalytic oxidation of allylic C—H bonds present in alkenes containing at least three carbon atoms. In this newly disclosed method, such alkenes, when reacted with carbon dioxide (CO2) in an organic solvent containing a catalyst comprising of a supported molecular complex of transition metal ions under conditions of ambient temperature and pressure using a readily available household LED lamp, yield oxygenated products. The developed method represents a unique way to use CO2 as an oxygen transfer agent to unsaturated organic compounds along with the formation of CO as a co-product using light as an energy source.Type: GrantFiled: March 24, 2022Date of Patent: January 16, 2024Assignee: Council of Scientific & Industrial ResearchInventors: Suman Lata Jain, Sandhya Saini, Shafuir Rehman Khan, Praveen Kumar Khatri, Anjan Ray
-
Patent number: 11817315Abstract: A method is disclosed of manufacturing a semiconductor structure comprising an (001) oriented zincblende structure group III-nitride layer, such as GaN. The layer is formed on a 3C-SiC layer on a silicon substrate. A nucleation layer is formed, recrystallized and then the zincblende structure group III-nitride layer is formed by MOVPE at temperature T3 in the range 750-1000° C., to a thickness of at least 0.5?. There is also disclosed a corresponding semiconductor structure comprising a zincblende structure group III-nitride layer which, when characterized by XRD, shows that the substantial majority, or all, of the layer is formed of zincblende structure group III-nitride in preference to wurtzite structure group III-nitride.Type: GrantFiled: February 25, 2022Date of Patent: November 14, 2023Assignees: Cambridge Enterprise Limited, Anvil Semiconductors LimitedInventors: David John Wallis, Martin Frentrup, Menno Johannes Kappers, Suman-Lata Sahonta
-
Publication number: 20230122417Abstract: The present invention discloses a photocatalytic process and methodology for the preparation of acetic acid by a hydrocarboxylation reaction of methanol using carbon dioxide under visible light irradiation. Importantly, the reaction occurred under ambient temperature and pressure condition using a readily available household LED lamp in the presence of a transition metal based molecular photocatalyst, homogeneous as well as supported to semiconductor support and a CO2-philic solvent without adding any external electron and proton donors.Type: ApplicationFiled: March 10, 2021Publication date: April 20, 2023Applicant: COUNCIL OF SCIENTIFIC AND INDUSTRIAL RESEARCHInventors: Suman Lata JAIN, Sandhya SAINI, Praveen Kumar KHATRI, Indrajit Kumar GHOSH, Anjan RAY
-
Publication number: 20230065184Abstract: Method for visible-light driven oxidation of aldehydes to carboxylic acid using carbon dioxide (CO2) as the oxidant in the absence of any catalyst are provided. In the disclosed process, aldehydes, when reacted with CO2 in an organic solvent, either in a batch reactor or in a continuous flow reactor, under conditions of ambient temperature and pressure, using a readily available household LED lamp, yield corresponding carboxylic acids along with the formation of carbon monoxide (CO) in the effluent gas.Type: ApplicationFiled: August 11, 2022Publication date: March 2, 2023Inventors: Suman Lata Jain, Shafuir Rehman Khan, Vineet Aniya, Alka Kumari, Sandhya Saini, Praveen Kumar Khatri, Anjan Ray
-
Publication number: 20220384181Abstract: A method is disclosed of manufacturing a semiconductor structure comprising an (001) oriented zincblende structure group III-nitride layer, such as GaN. The layer is formed on a 3C-SiC layer on a silicon substrate. A nucleation layer is formed, recrystallized and then the zincblende structure group III-nitride layer is formed by MOVPE at temperature T3 in the range 750-1000 ° C., to a thickness of at least 0.5?. There is also disclosed a corresponding semiconductor structure comprising a zincblende structure group III-nitride layer which, when characterized by XRD, shows that the substantial majority, or all, of the layer is formed of zincblende structure group III-nitride in preference to wurtzite structure group III-nitride.Type: ApplicationFiled: February 25, 2022Publication date: December 1, 2022Inventors: David John Wallis, Martin Frentrup, Menno Johannes Kappers, Suman-Lata Sahonta
-
Publication number: 20220314208Abstract: The present invention relates to a novel method for photocatalytic oxidation of allylic C—H bonds present in alkenes containing at least three carbon atoms. In this newly disclosed method, such alkenes, when reacted with carbon dioxide (CO2) in an organic solvent containing a catalyst comprising of a supported molecular complex of transition metal ions under conditions of ambient temperature and pressure using a readily available household LED lamp, yield oxygenated products. The developed method represents a unique way to use CO2 as an oxygen transfer agent to unsaturated organic compounds along with the formation of CO as a co-product using light as an energy source.Type: ApplicationFiled: March 24, 2022Publication date: October 6, 2022Inventors: Suman Lata JAIN, Sandhya SAINI, Shafuir Rehman KHAN, Praveen Kumar KHATRI, Anjan RAY
-
Patent number: 11302530Abstract: A method is disclosed of manufacturing a semiconductor structure comprising an (001) oriented zincblende structure group III-nitride layer, such as GaN. The layer is formed on a 3C—SiC layer on a silicon substrate. A nucleation layer is formed, recrystallized and then the zincblende structure group III-nitride layer is formed by MOVPE at temperature T3 in the range 750-1000° C., to a thickness of at least 0.5 ?m. There is also disclosed a corresponding semiconductor structure comprising a zincblende structure group III-nitride layer which, when characterized by XRD, shows that the substantial majority, or all, of the layer is formed of zincblende structure group III-nitride in preference to wurtzite structure group III-nitride.Type: GrantFiled: March 29, 2018Date of Patent: April 12, 2022Assignees: Cambridge Enterprise Limited, Anvil Semiconductors LimitedInventors: David John Wallis, Martin Frentrup, Menno Johannes Kappers, Suman-Lata Sahonta
-
Publication number: 20200402790Abstract: A method is disclosed of manufacturing a semiconductor structure comprising an (001) oriented zincblende structure group III-nitride layer, such as GaN. The layer is formed on a 3C—SiC layer on a silicon substrate. A nucleation layer is formed, recrystallized and then the zincblende structure group III-nitride layer is formed by MOVPE at temperature T3 in the range 750-1000° C., to a thickness of at least 0.5 ?m. There is also disclosed a corresponding semiconductor structure comprising a zincblende structure group III-nitride layer which, when characterized by XRD, shows that the substantial majority, or all, of the layer is formed of zincblende structure group III-nitride in preference to wurtzite structure group III-nitride.Type: ApplicationFiled: March 29, 2018Publication date: December 24, 2020Inventors: David John Wallis, Martin Frentrup, Menno Johannes Kappers, Suman-Lata Sahonta
-
Patent number: 10308603Abstract: This invention relates to an improved process for the selective production of N-methyl pyrrolidone (NMP) from gamma-butyrolactone and monomethyl amine preferably in aqueous form in the presence of a catalyst under comparatively milder conditions than the processes well known in the prior art of literature. The process is economically viable as it provides higher yield and selectivity for NMP which reduces the cost of separation of NMP from GBL. The catalyst shows good recyclability without significant loss in catalytic activity and no frequent regeneration is required.Type: GrantFiled: May 17, 2016Date of Patent: June 4, 2019Assignee: Council of Scientific & Industrial ResearchInventors: Indrajit Kumar Ghosh, Suman Lata Jain, Praveen Kumar Khatri, Siddharth Sankar Ray, Madhukar Onkarnath Garg
-
Publication number: 20180222859Abstract: This invention relates to an improved process for the selective production of N-methyl pyrrolidone (NMP) from gamma-butyrolactone and monomethyl amine preferably in aqueous form in the presence of a catalyst under comparatively milder conditions than the processes well known in the prior art of literature. The process is economically viable as it provides higher yield and selectivity for NMP which reduces the cost of separation of NMP from GBL. The catalyst shows good recyclability without significant loss in catalytic activity and no frequent regeneration is required.Type: ApplicationFiled: May 17, 2016Publication date: August 9, 2018Inventors: Indrajit Kumar GHOSH, Suman Lata JAIN, Praveen Kumar KHATRI, Siddharth Sankar RAY, Madhukar Onkarnath GARG
-
Patent number: 9638680Abstract: The embodiments of the present invention disclose a composition for the colorimetric detection of water in hydrocarbon fuels and a process for the preparation thereof. The embodiments of the present invention relate to an improved method for determining the presence or absence of water in non-polar organic fluids such as petroleum oil or hydrocarbon oils by using an indicator system containing a water insoluble wetting agent and a water soluble dye which can be performed rapidly without costly instrumentation and tedious, time consuming analytical methods.Type: GrantFiled: January 12, 2015Date of Patent: May 2, 2017Assignee: Council of Scientific & Industrial ResearchInventors: Khatri Praveen Kumar, Jain Suman Lata, Ghosh Indrajit Kumar, Umesh Kumar, Chatterjee Alok Kumar, Garg Madhukar Onkarnath
-
Patent number: 9606114Abstract: New compounds of the general formula Xm-G-CLn are described as well as methods for their production and use in the analysis, detection and purification of target molecules. These constitute multivalent chelator-compounds with an affinity-tag binding to metal-chelator-complexes which can selectively modify and/or immobilize target molecules by a multitude of probes or functional units.Type: GrantFiled: July 26, 2005Date of Patent: March 28, 2017Assignee: JOHANN WOLFGANG GOETHE-UNIVERSITAT FRANKFURT AM MAINInventors: Jacob Piehler, Robert Tampe, Suman Lata
-
Patent number: 9434668Abstract: The present invention relates to an improved process for the selective alkylation of phenols by reacting it with methyl tertiary butyl ether (MTBE) using polymer supported carbon composite acidic catalyst under mild to moderate conditions at atmospheric pressure. The process is economically viable since the catalyst regenerated after the initial reaction on further use gives the para tertiary butyl phenol (PTBP) in high yield.Type: GrantFiled: December 1, 2015Date of Patent: September 6, 2016Assignee: Council of Scientific and Industrial ResearchInventors: Praveen Kumar Khatri, Suman Lata Jain, Indrajit Kumar Ghosh
-
Patent number: 9090560Abstract: The present invention relates to a process for microwave assisted synthesis of N-methyl pyrrolidone (NMP). Particularly the process relates to the synthesis of N-methyl succinimide or corresponding analogs by using microwave irradiation which on hydrogenation in the presence of a hydrogenating catalyst gives N-methyl pyrrolidone. Compared to the conventional heating microwave process requires less energy inputs and reduces the reaction time drastically from 5-6 h to 2-5 min.Type: GrantFiled: September 4, 2014Date of Patent: July 28, 2015Assignee: COUNCIL OF SCIENTIFIC & INDUSTRIAL RESEARCHInventors: Praveen Kumar Khatri, Suman Lata Jain, Alok Kumar Chaterjee, Sain Bir
-
Publication number: 20150198576Abstract: The embodiments of the present invention disclose a composition for the colorimetric detection of water in hydrocarbon fuels and a process for the preparation thereof. The embodiments of the present invention relate to an improved method for determining the presence or absence of water in non-polar organic fluids such as petroleum oil or hydrocarbon oils by using an indicator system containing a water insoluble wetting agent and a water soluble dye which can be performed rapidly without costly instrumentation and tedious, time consuming analytical methods.Type: ApplicationFiled: January 12, 2015Publication date: July 16, 2015Applicant: COUNCIL OF SCIENTIFIC & INDUSTRIAL RESEARCHInventors: Khatri Praveen Kumar, Jain Suman Lata, Ghosh Indrajit Kumar, Umesh Kumar, Chatterjee Alok Kumar, Garg Madhukar Onkarnath
-
Publication number: 20150065731Abstract: The present invention relates to a process for microwave assisted synthesis of N-methyl pyrrolidone (NMP). Particularly the process relates to the synthesis of N-methyl succinimide or corresponding analogues by using microwave irradiation which on hydrogenation in the presence of a hydrogenating catalyst gives N-methyl pyrrolidone. Compared to the conventional heating microwave process requires less energy inputs and reduces the reaction time drastically from 5-6 h to 2-5 min.Type: ApplicationFiled: September 4, 2014Publication date: March 5, 2015Inventors: Praveen Kumar KHATRI, Suman Lata JAIN, Alok Kumar CHATERJEE, Sain BIR
-
Patent number: 7781622Abstract: The present invention provides a process for direct hydroxylation of aromatic hydrocarbons like benzene to phenol, toluene to cresols and anisole to methoxy phenols by using hydrogen peroxide as environmentally benign oxidant in polar solvent like acetonitrile using vanadium phthalocyanine or its derivative as a catalyst, at a temperature in the range of 25-100° C.Type: GrantFiled: October 30, 2008Date of Patent: August 24, 2010Assignee: Council of Scientific & Industrial ResearchInventors: Suman Lata Jain, Jomy K. Joseph, Sweety Singhal, Bir Sain, Ragunathan Sivakumaran, Basant Kumar
-
Publication number: 20090192337Abstract: The present invention provides a process for direct hydroxylation of aromatic hydrocarbons like benzene to phenol, toluene to cresols and anisole to methoxy phenols by using hydrogen peroxide as environmentally benign oxidant in polar solvent like acetonitrile using vanadium phthalocyanine or its derivative as a catalyst, at a temperature in the range of 25-100° C.Type: ApplicationFiled: October 30, 2008Publication date: July 30, 2009Applicant: COUNCIL OF SCIENTIFIC & INDUSTRIAL RESEARCHInventors: Suman Lata JAIN, Jomy K. JOSEPH, Sweety SINGHAL, Bir SAIN, Ragunathan SIVAKUMARAN, Basant KUMAR
-
Publication number: 20080038750Abstract: New compounds of the general formula Xm-G-CLn are described as well as methods for their production and use in the analysis, detection and purification of target molecules. These constitute multivalent chelator-compounds with an affinity-tag binding to metal-chelator-complexes which can selectively modify and/or immobilize target molecules by a multitude of probes or functional units.Type: ApplicationFiled: July 26, 2005Publication date: February 14, 2008Inventors: Jacob Piehler, Robert Tampe, Suman Lata