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Employment (1)

Sardar Vallabhbhai National Institute of Technology: Surat, Gujarat, IN

2007-07-17 to present | Assistant Professor (Chemical Engg.)
Employment
Source: Self-asserted source
Dr. Jignasa Gohel

Education and qualifications (1)

Sardar Vallabhbhai National Institute of Technology: Surat, Gujarat, IN

2008-01-08 to 2012-06-25 | Ph. D. (Chemical Engineering Department)
Education
Source: Self-asserted source
Dr. Jignasa Gohel

Works (15)

Synergistic effects of MOF 545 and inorganic additives synchronously for enhanced performance of low-cost carbon-based perovskite solar cells

Optical Materials
2024-09 | Journal article
Contributors: Nishant Rana; Jignasa V. Gohel
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“Contemporary neoteric energy materials to enhance efficiency and stability of perovskite solar cells: a review”

Journal of Solid State Electrochemistry
2024-09 | Journal article
Contributors: Srish Kulkarni; Smita Gupta; Jignasa V. Gohel
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Advanced materials to overcome the challenges in the fabrication of stable and efficient perovskite solar cells by additive engineering: a review

Journal of Materials Science
2023-11 | Journal article
Contributors: Shubham Khare; S. K. Sundar; Jignasa V. Gohel
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Incorporation of MOF UiO-66-NH2 and polyaniline for enhanced performance of low-cost carbon-based perovskite solar cells

Optical Materials
2023-10 | Journal article
Contributors: Srish Kulkarni; Smita Gupta; Jignasa V. Gohel
Source: check_circle
Crossref

Performance enhancement of cost-effective mixed cationic perovskite solar cell with MgCl2 and n-BAI as surface passivating agents

Optical Materials
2022-10 | Journal article
Contributors: Shubham Khare; Jignasa V. Gohel
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Introduction of P3HT-based gradient heterojunction layer to improve optoelectronic performance of low-cost carbon-based perovskite solar cell

Optical Materials
2021-09 | Journal article
Contributors: Saikumar Nair; Jignasa V. Gohel
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Impact of stress testing and passivation strategies on low-cost carbon-based perovskite solar cell under ambient conditions

Optical Materials
2021-07 | Journal article
Contributors: Saikumar Nair; Jignasa V. Gohel
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Crossref

Quasi solid-state quantum dot–sensitized solar cells with polysulfide gel polymer electrolyte for superior stability

Journal of Solid State Electrochemistry
2019-09-16 | Journal article
Contributors: Siddhant B. Patel; Jignasa V. Gohel
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Superior efficiency achievement for FAPbI3-perovskite thin film solar cell by optimization with response surface methodology technique and partial replacement of Pb by Sn

Optik
2019-01 | Journal article
Contributors: Nitu Kumari; Sanjaykumar R. Patel; Jignasa V. Gohel
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TiO2 nanoparticles prepared by mechanical reduction technique for superior DMFC nanocomposite PVA membranes

Separation Science and Technology
2019-01-22 | Journal article
Contributors: Jignasa Vimal Gohel; Preeti Sheshmani Mishra; Z. V. P. Murthy
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A novel and cost effective CZTS hole transport material applied in perovskite solar cells

CrystEngComm
2018 | Journal article
Contributors: Siddhant B. Patel; Amar H. Patel; Jignasa V. Gohel
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Crossref

Highly enhanced solar conversion efficiency of novel layer-by-layer PbS:Hg and CdS quantum dots-sensitized ZnO thin films prepared by sol–gel spin coating

Bulletin of Materials Science
2018-12 | Journal article
Contributors: MANGESH LANJEWAR; JIGNASA V GOHEL
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Synthesis of novel counter electrode by combination of mesoporous–macroporous CZTS films for enhanced performance of quantum-dots sensitized solar cells

Journal of Materials Science: Materials in Electronics
2018-11-24 | Journal article
Contributors: Siddhant B. Patel; Jignasa V. Gohel
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Enhanced solar cell performance by optimization of spray coated CZTS thin film using Taguchi and response surface method

Journal of Materials Science: Materials in Electronics
2018-04-19 | Journal article
Contributors: Siddhant B. Patel; Jignasa V. Gohel
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Highly enhanced photocurrent of novel quantum-dot-co-sensitized PbS–Hg/CdS/Cu:ZnO thin films for photoelectrochemical applications

Applied Physics A
2017-08 | Journal article
Contributors: Jignasa V. Gohel; A. K. Jana; Mohit Singh
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Peer review (3 reviews for 1 publication/grant)

Review activity for Macromolecular rapid communications. (3)