Sandeep Sharma

605 total citations
21 papers, 421 citations indexed

About

Sandeep Sharma is a scholar working on Biomedical Engineering, Materials Chemistry and Plant Science. According to data from OpenAlex, Sandeep Sharma has authored 21 papers receiving a total of 421 indexed citations (citations by other indexed papers that have themselves been cited), including 14 papers in Biomedical Engineering, 9 papers in Materials Chemistry and 4 papers in Plant Science. Recurrent topics in Sandeep Sharma's work include Graphene and Nanomaterials Applications (7 papers), Polymer-Based Agricultural Enhancements (6 papers) and Carbon and Quantum Dots Applications (6 papers). Sandeep Sharma is often cited by papers focused on Graphene and Nanomaterials Applications (7 papers), Polymer-Based Agricultural Enhancements (6 papers) and Carbon and Quantum Dots Applications (6 papers). Sandeep Sharma collaborates with scholars based in India, United States and Italy. Sandeep Sharma's co-authors include Vijayakumar Shanmugam, Sanjay Singh, Ashok K. Ganguli, Kamaljit Kaur, Nikhil Koratkar, Lidong Cao, Qiliang Huang, Rajapandiyan Panneerselvam, Tsering Stobdan and Manish Singh and has published in prestigious journals such as Nature Communications, ACS Nano and Scientific Reports.

In The Last Decade

Sandeep Sharma

21 papers receiving 415 citations

Peers — A (Enhanced Table)

Peers by citation overlap · career bar shows stage (early→late) cites · hero ref

Name h Career Trend Papers Cites
Sandeep Sharma India 10 233 194 128 70 56 21 421
Jin-Liang Jia China 10 154 0.7× 121 0.6× 128 1.0× 57 0.8× 65 1.2× 18 357
Qiuyu Xiong China 9 378 1.6× 193 1.0× 214 1.7× 120 1.7× 113 2.0× 16 612
Zhinan Fu China 11 171 0.7× 125 0.6× 57 0.4× 58 0.8× 98 1.8× 32 339
Kamaljit Kaur India 9 144 0.6× 131 0.7× 75 0.6× 35 0.5× 54 1.0× 20 289
Tianyue Wu China 11 245 1.1× 94 0.5× 214 1.7× 135 1.9× 89 1.6× 17 448
Jasreen Kaur India 10 120 0.5× 162 0.8× 42 0.3× 32 0.5× 66 1.2× 17 330
Huachen Wang China 13 222 1.0× 126 0.6× 136 1.1× 122 1.7× 115 2.1× 17 449
Longzheng Wang China 7 190 0.8× 125 0.6× 34 0.3× 57 0.8× 120 2.1× 8 395
Zhaodong Yuan China 6 484 2.1× 482 2.5× 63 0.5× 28 0.4× 78 1.4× 8 681

Countries citing papers authored by Sandeep Sharma

Since Specialization
Citations

This map shows the geographic impact of Sandeep Sharma's research. It shows the number of citations coming from papers published by authors working in each country. You can also color the map by specialization and compare the number of citations received by Sandeep Sharma with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Sandeep Sharma more than expected).

Fields of papers citing papers by Sandeep Sharma

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Sandeep Sharma. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the papers produced by Sandeep Sharma. The network helps show where Sandeep Sharma may publish in the future.

Co-authorship network of co-authors of Sandeep Sharma

This figure shows the co-authorship network connecting the top 25 collaborators of Sandeep Sharma. A scholar is included among the top collaborators of Sandeep Sharma based on the total number of citations received by their joint publications. Widths of edges represent the number of papers authors have co-authored together. Node borders signify the number of papers an author published with Sandeep Sharma. Sandeep Sharma is excluded from the visualization to improve readability, since they are connected to all nodes in the network.

All Works

20 of 20 papers shown
1.
Sharma, Bhaskar, Sandeep Sharma, Jason M. Unrine, et al.. (2025). Controlled Nitrogen Release by Hydroxyapatite Nanomaterials in Leaves Enhances Plant Growth and Nitrogen Uptake. ACS Nano. 19(3). 3906–3919. 6 indexed citations
2.
Sharma, Sandeep, Thomas M. Perring, Su‐Ji Jeon, et al.. (2024). Nanocarrier mediated delivery of insecticides into tarsi enhances stink bug mortality. Nature Communications. 15(1). 9737–9737. 11 indexed citations
3.
Sharma, Sandeep, et al.. (2024). Multifunctional halloysite nanotube–polydopamine agro-carriers for controlling bacterial soft rot disease. Environmental Science Nano. 11(3). 1114–1128. 8 indexed citations
4.
Sharma, Sandeep, Patit Paban Kundu, Deepak Tyagi, & Vijayakumar Shanmugam. (2024). Graphene-based nanomaterials applications for agricultural and food sector. Advances in Colloid and Interface Science. 336. 103377–103377. 3 indexed citations
5.
Sharma, Sandeep, et al.. (2022). Targeted nutrient application to tomato plant with MOF/Zeolite composite wrapped with stimuli-responsive biopolymer. Materials Today Communications. 34. 105264–105264. 6 indexed citations
6.
Sharma, Sandeep, et al.. (2022). Farm waste-eggshell nanoparticles constitute gel for safe navigation of probiotic across the stomach. Materials Today Communications. 34. 104876–104876. 5 indexed citations
7.
8.
Kaur, Kamaljit, et al.. (2021). Promise of nano-carbon to the next generation sustainable agriculture. Carbon. 188. 461–481. 39 indexed citations
9.
Kaur, Kamaljit, Sandeep Sharma, Ritika Gupta, et al.. (2021). Nanomaze Lure: Pheromone Sandwich in Graphene Oxide Interlayers for Sustainable Targeted Pest Control. ACS Applied Materials & Interfaces. 13(41). 48349–48357. 18 indexed citations
10.
Sharma, Sandeep, Lidong Cao, Kamaljit Kaur, et al.. (2021). Porous nanomaterials: Main vein of agricultural nanotechnology. Progress in Materials Science. 121. 100812–100812. 74 indexed citations
11.
Sharma, Sandeep, Bharat Singh, P. Panneerselvam, et al.. (2021). Triple-Smart Eco-Friendly Chili Anthracnose Control Agro-Nanocarrier. ACS Applied Materials & Interfaces. 13(7). 9143–9155. 32 indexed citations
12.
Sharma, Sandeep, Mohd. Muddassir, Manish Singh, et al.. (2020). A non-classical route of efficient plant uptake verified with fluorescent nanoparticles and root adhesion forces investigated using AFM. Scientific Reports. 10(1). 19233–19233. 13 indexed citations
14.
Kaur, Kamaljit, Sanjit Mondal, Weipeng Li, et al.. (2020). Upconversion Nanodevice-Assisted Healthy Molecular Photocorrection. ACS Biomaterials Science & Engineering. 7(1). 291–298. 4 indexed citations
15.
Sharma, Sandeep, et al.. (2018). Ecofriendly Fruit Switches: Graphene Oxide-Based Wrapper for Programmed Fruit Preservative Delivery To Extend Shelf Life. ACS Applied Materials & Interfaces. 10(22). 18478–18488. 36 indexed citations
16.
Singhal, Nitin Kumar, et al.. (2018). Twin Function of Zein–Zinc Coordination Complex: Wheat Nutrient Enrichment and Nanoshield against Pathogenic Infection. ACS Sustainable Chemistry & Engineering. 6(5). 5877–5887. 7 indexed citations
17.
Sharma, Bharat Bhushan, et al.. (2017). Fredericson type III medial tibial stress syndrome (shin splints): a case report. 1(3). 1 indexed citations
18.
Sharma, Sandeep, Sanjay Singh, Ashok K. Ganguli, & Vijayakumar Shanmugam. (2017). Anti-drift nano-stickers made of graphene oxide for targeted pesticide delivery and crop pest control. Carbon. 115. 781–790. 98 indexed citations
19.
Rao, G. P., Sangeeta Srivastava, Prashant Gupta, et al.. (2008). Detection of sugarcane grassy shoot phytoplasma infecting sugarcane in India and its phylogenetic relationships to closely related phytoplasmas. Sugar Tech. 10(1). 74–80. 21 indexed citations
20.
Rao, G. P., et al.. (2003). Molecular characterization of a phytoplasma associated with grassy shoot disease of sugarcane in india. Sugar Tech. 5(4). 301–303. 4 indexed citations

Rankless uses publication and citation data sourced from OpenAlex, an open and comprehensive bibliographic database. While OpenAlex provides broad and valuable coverage of the global research landscape, it—like all bibliographic datasets—has inherent limitations. These include incomplete records, variations in author disambiguation, differences in journal indexing, and delays in data updates. As a result, some metrics and network relationships displayed in Rankless may not fully capture the entirety of a scholar's output or impact.

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