M. Planinić

2.9k total citations · 1 hit paper
82 papers, 2.2k citations indexed

About

M. Planinić is a scholar working on Food Science, Plant Science and Nutrition and Dietetics. According to data from OpenAlex, M. Planinić has authored 82 papers receiving a total of 2.2k indexed citations (citations by other indexed papers that have themselves been cited), including 39 papers in Food Science, 29 papers in Plant Science and 21 papers in Nutrition and Dietetics. Recurrent topics in M. Planinić's work include Food composition and properties (20 papers), Phytochemicals and Antioxidant Activities (16 papers) and Biofuel production and bioconversion (11 papers). M. Planinić is often cited by papers focused on Food composition and properties (20 papers), Phytochemicals and Antioxidant Activities (16 papers) and Biofuel production and bioconversion (11 papers). M. Planinić collaborates with scholars based in Croatia, Hungary and Slovenia. M. Planinić's co-authors include Ana Bucić‐Kojić, Mate Bilić, Darko Velić, Srećko Tomas, Marina Tišma, Gordana Šelo, Stela Jokić, Daliborka Koceva Komlenić, Bruno Zelić and Polona Žnidaršič‐Plazl and has published in prestigious journals such as SHILAP Revista de lepidopterología, Bioresource Technology and Food Chemistry.

In The Last Decade

M. Planinić

76 papers receiving 2.2k citations

Hit Papers

Role of the Encapsulation in Bioavailability of Phenolic ... 2020 2026 2022 2024 2020 50 100 150 200 250

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
M. Planinić Croatia 22 1.2k 702 594 327 306 82 2.2k
Gengsheng Xiao China 24 1.2k 1.0× 742 1.1× 709 1.2× 381 1.2× 161 0.5× 89 2.3k
Minh H. Nguyen Australia 32 1.4k 1.2× 830 1.2× 366 0.6× 342 1.0× 499 1.6× 88 3.3k
Jiangfeng Song China 27 988 0.8× 637 0.9× 590 1.0× 329 1.0× 138 0.5× 81 2.2k
Naphaporn Chiewchan Thailand 30 1.6k 1.4× 749 1.1× 733 1.2× 606 1.9× 190 0.6× 82 2.9k
Irina Ioannou France 23 821 0.7× 675 1.0× 619 1.0× 328 1.0× 160 0.5× 56 2.1k
Lloyd Simons Australia 10 1.2k 1.0× 656 0.9× 530 0.9× 257 0.8× 255 0.8× 11 2.4k
Seda Ersus Türkiye 18 1.2k 1.0× 659 0.9× 440 0.7× 206 0.6× 258 0.8× 66 2.2k
Yongbin Han China 31 1.4k 1.2× 541 0.8× 796 1.3× 588 1.8× 167 0.5× 80 2.7k
Yujuan Xu China 27 1.2k 1.0× 796 1.1× 841 1.4× 455 1.4× 136 0.4× 120 2.4k
Winny Routray India 22 908 0.8× 512 0.7× 508 0.9× 361 1.1× 192 0.6× 59 2.0k

Countries citing papers authored by M. Planinić

Since Specialization
Citations

This map shows the geographic impact of M. Planinić'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 M. Planinić with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites M. Planinić more than expected).

Fields of papers citing papers by M. Planinić

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by M. Planinić. 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 M. Planinić. The network helps show where M. Planinić may publish in the future.

Co-authorship network of co-authors of M. Planinić

This figure shows the co-authorship network connecting the top 25 collaborators of M. Planinić. A scholar is included among the top collaborators of M. Planinić 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 M. Planinić. M. Planinić 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
2.
Planinić, M., et al.. (2024). Optimisation of the Encapsulation of Grape Pomace Extract by Spray Drying Using Goat Whey Protein as a Coating Material. Coatings. 14(9). 1101–1101. 5 indexed citations
3.
Bucić‐Kojić, Ana, et al.. (2024). Release of Fermentable Sugars from Corn Silage – The Effect of Biological Pretreatment. Chemical and Biochemical Engineering Quarterly. 37(4). 245–253.
5.
Šalić, Anita, et al.. (2023). Standardization of 3,5-dinitrosalicylic acid (DNS) assay for measuring xylanase activity. SHILAP Revista de lepidopterología. 15(2). 151–162. 6 indexed citations
6.
Lukinac, Jasmina, Marko Jukić, Rita Ambrus, et al.. (2023). Physicochemical Characterization and Evaluation of Gastrointestinal In Vitro Behavior of Alginate-Based Microbeads with Encapsulated Grape Pomace Extracts. Pharmaceutics. 15(3). 980–980. 17 indexed citations
7.
Lukinac, Jasmina, Marko Jukić, Rita Ambrus, et al.. (2023). In Vitro Bioaccessibility Assessment of Phenolic Compounds from Encapsulated Grape Pomace Extract by Ionic Gelation. Molecules. 28(13). 5285–5285. 17 indexed citations
8.
Šelo, Gordana, et al.. (2023). Antioxidant and antiproliferative potentials of phenolic-rich extracts from biotransformed grape pomace in colorectal Cancer. BMC Complementary Medicine and Therapies. 23(1). 29–29. 16 indexed citations
9.
Planinić, M., et al.. (2022). Improvement of the Nutraceutical Profile of Brewer’s Spent Grain after Treatment with Trametes versicolor. Microorganisms. 10(11). 2295–2295. 18 indexed citations
10.
Tišma, Marina, Polona Žnidaršič‐Plazl, Biljana Kulišić, et al.. (2022). The Potential of Brewer’s Spent Grain in the Circular Bioeconomy: State of the Art and Future Perspectives. Frontiers in Bioengineering and Biotechnology. 10. 870744–870744. 91 indexed citations
11.
Tišma, Marina, Polona Žnidaršič‐Plazl, Gordana Šelo, et al.. (2021). Trametes versicolor in lignocellulose-based bioeconomy: State of the art, challenges and opportunities. Bioresource Technology. 330. 124997–124997. 82 indexed citations
12.
Planinić, M., et al.. (2020). Analysis of phenolic compounds in beer: from raw materials to the final product. Chemical Papers. 75(1). 67–76. 16 indexed citations
13.
Tišma, Marina, et al.. (2018). Corn silage fungal-based solid-state pretreatment for enhanced biogas production in anaerobic co-digestion with cow manure. Bioresource Technology. 253. 220–226. 76 indexed citations
14.
Bucić‐Kojić, Ana, Gordana Šelo, Bruno Zelić, M. Planinić, & Marina Tišma. (2016). Recovery of Phenolic Acid and Enzyme Production from Corn Silage Biologically Treated by Trametes versicolor. Applied Biochemistry and Biotechnology. 181(3). 948–960. 27 indexed citations
15.
Beneš, I, et al.. (2013). Utilisation of pentosans from sugar beet pulp by different white-rot fungi.. 50. 94–98. 1 indexed citations
16.
Bucić‐Kojić, Ana, Helena Sovová, M. Planinić, & Srećko Tomas. (2012). Temperature-dependent kinetics of grape seed phenolic compounds extraction: Experiment and model. Food Chemistry. 136(3-4). 1136–1140. 67 indexed citations
17.
Cesevičienė, Jurgita, et al.. (2012). Comparison of gluten parameters when gluten is determined by the glutomatic and hand washing methods.. 180–189. 2 indexed citations
18.
Velić, Darko, Stela Jokić, Ana Bucić‐Kojić, et al.. (2011). Mathematical modeling of total flavonoid compounds extraction from conventionally grown soybeans.. 690–694. 1 indexed citations
19.
Tomas, Srećko, M. Planinić, Ana Bucić‐Kojić, et al.. (2009). Technological Solution for the Sustainability of the Destructive Distillation of Wood in Classic Horizontal Retorts. Chemical and Biochemical Engineering Quarterly. 23(4). 555–561. 3 indexed citations
20.
Sedej, Ivana, Marijana Sakač, Aleksandra Mišan, et al.. (2009). Evaluation of antioxidant activity of buckwheat flour extracts.. 326–333. 1 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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