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Number of items: 19.

Article

Illa, Mani Pujitha and Khandelwal, Mudrika and Sharma, Chandra Shekhar (2019) Modulated Dehydration for Enhanced Anodic Performance of Bacterial Cellulose derived Carbon Nanofibers. ChemistrySelect, 4 (21). pp. 6642-6650. ISSN 2365-6549

Mahanta, Urbashi and Khandelwal, Mudrika and Deshpande, Atul Suresh (2019) Wetting Transition from Lotus Leaf to Rose Petal using Modified Fly Ash. ChemistrySelect, 4 (27). pp. 7936-7942. ISSN 2365-6549

Illa, Mani Pujitha and Khandelwal, Mudrika and Sharma, Chandra Shekhar (2018) Bacterial cellulose-derived carbon nanofibers as anode for lithium-ion batteries. Emergent Materials. pp. 1-16. ISSN 2522-5731

Gaydhane, Mrunalini K and Mahanta, Urbashi and Sharma, Chandra Shekhar and Khandelwal, Mudrika and et al, . (2018) Cultured meat: state of the art and future. Biomanufacturing Reviews, 3 (1). ISSN 2363-507X

Sharma, Chandra Shekhar and Khandelwal, Mudrika (2018) A novel transdermal drug-delivery patch for treating local muscular pain. Therapeutic Delivery, 9 (6). pp. 405-407. ISSN 2041-5990

Adepu, Shivakalyani and Khandelwal, Mudrika (2017) Broad-spectrum antimicrobial activity of bacterial cellulose silver nanocomposites with sustained release. Journal of Materials Science. pp. 1-14. ISSN 0022-2461 (In Press)

Kakunuri, Manohar and Araga, Ramya and Khandelwal, Mudrika and Sharma, Chandra Shekhar (2017) Cellulose Acetate Derived Free-Standing Electrospun Carbon Nanofibrous Mat As an Anode Material for Rechargeable Lithium-Ion Battery. ECS Meeting Abstracts. ISSN 2151-2043

Adepu, S and Gaydhane, M K and Kakunuri, M and Sharma, Chandra Shekhar and Khandelwal, Mudrika and Eichhorn, S J (2017) Effect of micropatterning induced surface hydrophobicity on drug release from electrospun cellulose acetate nanofibers. Applied Surface Science. ISSN 0169-4332 (In Press)

Kakunuri, M and Khandelwal, Mudrika and Sharma, Chandra Shekhar and Eichhorn, S J (2017) Fabrication of Bio-inspired Hydrophobic Self-Assembled Electrospun Nanofiber Based Hierarchical Structures. Materials Letters, 196. pp. 339-342. ISSN 0167-577X

Adepu, Shivakalyani and Dhiman, Nandini and Laha, Anindita and Sharma, Chandra Shekhar and Ramakrishna, Seeram and Khandelwal, Mudrika (2017) Three-dimensional bioprinting for bone tissue regeneration. Current Opinion in Biomedical Engineering, 2. pp. 22-28. ISSN 2468-4511

Kakunuri, M and Wanasekara, N D and Sharma, Chandra Shekhar and Khandelwal, Mudrika and Eichhorn, S J (2017) Three-dimensional electrospun micropatterned cellulose acetate nanofiber surfaces with tunable wettability. Journal of Applied Polymer Science, 134 (15). p. 44709. ISSN 0021-8995

Khandelwal, Mudrika and Windle, A H and Hessler, N (2016) In situ tunability of bacteria produced cellulose by additives in the culture media. Journal of Materials Science, 51 (10). pp. 4839-4844. ISSN 0022-2461

Monograph

Anand, D and Khandelwal, Mudrika (2015) Novel conducting paper from bacterial cellulose and poly aniline. Project Report. Technical volume in 29th Engineering Congress, Hyderabad under the sub-theme “Manufacturing” Technical Session V, Hyderabad.

Anand, D and Khandelwal, Mudrika (2015) Route to conducting nanocomposites by simultaneous in situ polymerization of aniline and matrix assembly from bacterial cellulose nanowhiskers. Project Report. International Conference "Plast India-2015", Gandhinagar.

Conference or Workshop Item

Khandelwal, Mudrika and Aggarwal, Kadam (2016) Contextualising Engineering Education to 21st Century - MBA Style Education for Engineering. In: Journal of Engineering Education Transformations, 2016.

Thesis

Palai, Debabrata and Khandelwal, Mudrika (2019) Bacterial cellulose membranes for ultrafiltration. Masters thesis, Indian institute of technology Hyderabad.

P V, Anju and Khandelwal, Mudrika (2019) In situ Derived Composites of Recycled Polystyrene and Bacterial cellulose. Masters thesis, Indian institute of technology Hyderabad.

Anand, Divya and Khandelwal, Mudrika (2015) Conducting flexible paper based on Bacterial cellulose and Polyaniline composites. Masters thesis, Indian Institute of Technology Hyderabad.

Other

Khandelwal, Mudrika and Deshpande, Atul Suresh (2019) IIT Hyderabad scientists convert fly ash into waterproofing material. Down to Earth, Hyderabad.

This list was generated on Sun Aug 25 15:18:38 2019 IST.