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プロフィール詳細
プロジェクトを作成
★★★★★
☆☆☆☆☆
Dr. Rahul P.に依頼
India

My aim is to save your company unnecessary R&D and get the right kind of product/formulation in the minimum time.

プロフィール概要
専門分野
サービス
Writing Technical Writing
Research Gap Analysis, Scientific and Technical Research
Consulting Scientific and Technical Consulting
Product Development Formulation, Recipe Development, Deformulation, Material Sourcing, Manufacturing
職務経験

Senior Manager

Quantaplast Polymer Pvt. Ltd.

12月 2021 - 現在

Research assistant

University of Limerick

6月 2021 - 現在

Junior Researcher

Tomas Bata University in Zlín

10月 2018 - 現在

Post-doctoral Fellow

University of Limerick

6月 2021 - 12月 2021

Post-doctoral Fellow

Tomas Bata University in Zlin

10月 2018 - 6月 2021

学歴

PhD

Indian Institute of Technology Guwahati

7月 2012 - 6月 2018

PhD (Department of Chemical Engineering)

Indian Institute of Technology Guwahati

7月 2012 - 6月 2018

M.Tech

Malaviya National Institute of Technology Jaipur - India

8月 2010 - 6月 2012

M.Tech (Department of Chemical Engineering)

Malaviya National Institute of Technology

2010 - 2012

B.Tech.

Rajasthan Technical University

8月 2006 - 7月 2010

B.Tech (Biotechnology)

Rajasthan Technical University

2006 - 2010

認定資格
  • 認定資格の詳細は未入力です。
出版物
JOURNAL ARTICLE
(2021). Facile preparation and characterization of injectable self-antibacterial gelatin/carrageenan/bacterial cellulose hydrogel scaffolds for wound healing application. Journal of Drug Delivery Science and Technology.
(2021). Self-crosslinked chitosan/dialdehyde xanthan gum blended hypromellose hydrogel for the controlled delivery of ampicillin, minocycline and rifampicin. International Journal of Biological Macromolecules.
Rahul Patwa and Oyunchimeg Zandraa and Zdenka Cap{\'{a}}kov{\'{a}} and Nabanita Saha and Petr S{\'{a}}ha(2020). Effect of Iron-Oxide Nanoparticles Impregnated Bacterial Cellulose on Overall Properties of Alginate/Casein Hydrogels: Potential Injectable Biomaterial for Wound Healing Applications . Polymers. 12. (11). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 2690. {MDPI} {AG}
Rahul Patwa, Oyunchimeg Zandraa, Zdenka Capáková, Nabanita Saha, Petr Sáha(2020). Effect of Iron-Oxide Nanoparticles Impregnated Bacterial Cellulose on Overall Properties of Alginate/Casein Hydrogels: Potential Injectable Biomaterial for Wound Healing Applications . Polymers. 12. (11). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 2690. {MDPI} {AG}
Rahul Patwa and Nabanita Saha and Petr S{\'{a}}ha(2020). Magnetic hydrogel based shoe insoles for prevention of diabetic foot . Journal of Magnetism and Magnetic Materials. 514. Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 167153. Elsevier {BV}
Patwa, R., Saha, N., Sáha, P.(2020). Magnetic hydrogel based shoe insoles for prevention of diabetic foot . Journal of Magnetism and Magnetic Materials. 514.
Rahul Patwa and Nabanita Saha and Petr S{\'{a}}ha(2020). Magnetic hydrogel based shoe insoles for diabetics . PROCEEDINGS OF THE 35TH INTERNATIONAL CONFERENCE OF THE POLYMER PROCESSING SOCIETY (PPS-35). {AIP} Publishing
Ngwabebhoh, F.A., Zandraa, O., Patwa, R., Saha, N., Capáková, Z., Saha, P.(2020). Self-crosslinked chitosan/dialdehyde xanthan gum blended hypromellose hydrogel for the controlled delivery of ampicillin, minocycline and rifampicin . International Journal of Biological Macromolecules.
Patwa, R., Zandraa, O., Capáková, Z., Saha, N., Sáha, P.(2020). Effect of iron-oxide nanoparticles impregnated bacterial cellulose on overall properties of alginate/casein hydrogels: Potential injectable biomaterial for wound healing applications . Polymers. 12. (11). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 1-21.
Patwa, R., Saha, N., Sáha, P., Katiyar, V.(2019). Biocomposites of poly(lactic acid) and lactic acid oligomer-grafted bacterial cellulose: It's preparation and characterization . Journal of Applied Polymer Science. 136. (35).
Patwa, R., Singh, M., Kumar, A., Katiyar, V.(2019). Kinetic modelling of thermal degradation and non-isothermal crystallization of silk nano-discs reinforced poly (lactic acid) bionanocomposites . Polymer Bulletin. 76. (3). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 1349-1382.
Patwa, R., Kumar, A., Katiyar, V.(2018). Effect of silk nano-disc dispersion on mechanical, thermal, and barrier properties of poly(lactic acid) based bionanocomposites . Journal of Applied Polymer Science. 135. (38).
Patwa, R., Soundararajan, N., Mulchandani, N., Bhasney, S.M., Shah, M., Kumar, S., Kumar, A., Katiyar, V.(2018). Silk nano-discs: A natural material for cancer therapy . Biopolymers. 109. (11).
Tesfaye, M., Patwa, R., Dhar, P., Katiyar, V.(2017). Nanosilk-grafted poly(lactic acid) films: Influence of cross-linking on rheology and thermal stability . ACS Omega. 2. (10). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 7071-7084.
Tesfaye, M., Patwa, R., Gupta, A., Kashyap, M.J., Katiyar, V.(2017). Recycling of poly (lactic acid)/silk based bionanocomposites films and its influence on thermal stability, crystallization kinetics, solution and melt rheology . International Journal of Biological Macromolecules. 101. Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 580-594.
Tesfaye, M., Patwa, R., Kommadath, R., Kotecha, P., Katiyar, V.(2016). Silk nanocrystals stabilized melt extruded poly (lactic acid) nanocomposite films: Effect of recycling on thermal degradation kinetics and optimization studies . Thermochimica Acta. 643. Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 41-52.
CONFERENCE PAPER
Patwa, R., Saha, N., Sáha, P.(2020). Magnetic hydrogel based shoe insoles for diabetics . AIP Conference Proceedings. 2205.
Pandey, A.K., Patwa, R., Katiyar, V., Sasaki, S., Sakurai, S.(2018). Effects of a biobased filler on the crystallization behaviors of poly(L-lactic acid) . Fiber Society 2018 Spring Conference: Fibers and Textiles for Value Creation in Connected Industries.
BOOK CHAPTER
Gupta, A., Pal, A.K., Patwa, R., Dhar, P., Katiyar, V.(2018). Green composites with excellent barrier properties . Advanced Green Composites. Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 321-367.