OpenAlex Citation Counts

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OpenAlex is a bibliographic catalogue of scientific papers, authors and institutions accessible in open access mode, named after the Library of Alexandria. It's citation coverage is excellent and I hope you will find utility in this listing of citing articles!

If you click the article title, you'll navigate to the article, as listed in CrossRef. If you click the Open Access links, you'll navigate to the "best Open Access location". Clicking the citation count will open this listing for that article. Lastly at the bottom of the page, you'll find basic pagination options.

Requested Article:

Evaluation of Exposure Concentrations Used in Assessing Manufactured Nanomaterial Environmental Hazards: Are They Relevant?
Patricia A. Holden, Frederick C. Klaessig, Ronald F. Turco, et al.
Environmental Science & Technology (2014) Vol. 48, Iss. 18, pp. 10541-10551
Closed Access | Times Cited: 185

Showing 1-25 of 185 citing articles:

Nanotechnology in the real world: Redeveloping the nanomaterial consumer products inventory
Marina E. Vance, Todd Kuiken, Eric P. Vejerano, et al.
Beilstein Journal of Nanotechnology (2015) Vol. 6, pp. 1769-1780
Open Access | Times Cited: 1609

Dynamic Probabilistic Modeling of Environmental Emissions of Engineered Nanomaterials
Tian Yin Sun, Nikolaus A. Bornhöft, Konrad Hungerbühler, et al.
Environmental Science & Technology (2016) Vol. 50, Iss. 9, pp. 4701-4711
Open Access | Times Cited: 483

Microfiber Masses Recovered from Conventional Machine Washing of New or Aged Garments
Niko L. Hartline, Nicholas J. Bruce, Stephanie N. Karba, et al.
Environmental Science & Technology (2016) Vol. 50, Iss. 21, pp. 11532-11538
Open Access | Times Cited: 399

Nanofertilizers: New Products for the Industry?
Christian O. Dimkpa, P.S. Bindraban
Journal of Agricultural and Food Chemistry (2017) Vol. 66, Iss. 26, pp. 6462-6473
Closed Access | Times Cited: 398

Risks, Release and Concentrations of Engineered Nanomaterial in the Environment
B. Giese, Fred Klaessig, Barry Park, et al.
Scientific Reports (2018) Vol. 8, Iss. 1
Open Access | Times Cited: 382

Nanotechnology in agriculture: Next steps for understanding engineered nanoparticle exposure and risk
Alia D. Servin, Jason C. White
NanoImpact (2016) Vol. 1, pp. 9-12
Closed Access | Times Cited: 332

Fortification of micronutrients for efficient agronomic production: a review
Christian O. Dimkpa, P.S. Bindraban
Agronomy for Sustainable Development (2016) Vol. 36, Iss. 1
Open Access | Times Cited: 309

One-Dimensional Metal Nanostructures: From Colloidal Syntheses to Applications
Da Huo, Myung Jun Kim, Zhiheng Lyu, et al.
Chemical Reviews (2019) Vol. 119, Iss. 15, pp. 8972-9073
Closed Access | Times Cited: 284

Nanoplastics impaired oyster free living stages, gametes and embryos
Kévin Tallec, Arnaud Huvet, Carole Di Poi, et al.
Environmental Pollution (2018) Vol. 242, pp. 1226-1235
Open Access | Times Cited: 239

Effects of Silver Nanoparticles on Radish Sprouts: Root Growth Reduction and Modifications in the Nutritional Value
Nubia Zuverza‐Mena, R. Arméndariz, Jose R. Peralta‐Videa, et al.
Frontiers in Plant Science (2016) Vol. 7
Open Access | Times Cited: 232

1H NMR and GC-MS Based Metabolomics Reveal Defense and Detoxification Mechanism of Cucumber Plant under Nano-Cu Stress
Lijuan Zhao, Yuxiong Huang, Jerry Hu, et al.
Environmental Science & Technology (2016) Vol. 50, Iss. 4, pp. 2000-2010
Open Access | Times Cited: 228

Modeling Flows and Concentrations of Nine Engineered Nanomaterials in the Danish Environment
Fadri Gottschalk, Carsten Lassen, Jesper Kjoelholt, et al.
International Journal of Environmental Research and Public Health (2015) Vol. 12, Iss. 5, pp. 5581-5602
Open Access | Times Cited: 226

Considerations of Environmentally Relevant Test Conditions for Improved Evaluation of Ecological Hazards of Engineered Nanomaterials
Patricia A. Holden, Jorge L. Gardea‐Torresdey, Fred Klaessig, et al.
Environmental Science & Technology (2016) Vol. 50, Iss. 12, pp. 6124-6145
Open Access | Times Cited: 214

The impact of cerium oxide nanoparticles on the salt stress responses of Brassica napus L.
Lorenzo Rossi, Weilan Zhang, Leonardo Lombardini, et al.
Environmental Pollution (2016) Vol. 219, pp. 28-36
Open Access | Times Cited: 205

Probabilistic environmental risk assessment of five nanomaterials (nano-TiO2, nano-Ag, nano-ZnO, CNT, and fullerenes)
Claudia Coll, Dominic A. Notter, Fadri Gottschalk, et al.
Nanotoxicology (2015) Vol. 10, Iss. 4, pp. 436-444
Open Access | Times Cited: 203

Heteroaggregation of nanoparticles with biocolloids and geocolloids
Hongtao Wang, Adeyemi S. Adeleye, Yuxiong Huang, et al.
Advances in Colloid and Interface Science (2015) Vol. 226, pp. 24-36
Closed Access | Times Cited: 183

Environmental safety of nanotechnologies: The eco-design of manufactured nanomaterials for environmental remediation
Ilaria Corsi, Iole Venditti, Francesco Trotta, et al.
The Science of The Total Environment (2022) Vol. 864, pp. 161181-161181
Closed Access | Times Cited: 70

Nanotechnology in agriculture: A solution to global food insecurity in a changing climate?
Shital R. Vaidya, Chaoyi Deng, Yi Wang, et al.
NanoImpact (2024) Vol. 34, pp. 100502-100502
Open Access | Times Cited: 16

Cerium oxide nanoparticles alter the salt stress tolerance of Brassica napus L. by modifying the formation of root apoplastic barriers
Lorenzo Rossi, Weilan Zhang, Xingmao Ma
Environmental Pollution (2017) Vol. 229, pp. 132-138
Open Access | Times Cited: 166

Engineered nanomaterials in the environment: Are they safe?
Jian Zhao, Meiqi Lin, Zhenyu Wang, et al.
Critical Reviews in Environmental Science and Technology (2020) Vol. 51, Iss. 14, pp. 1443-1478
Open Access | Times Cited: 136

NanoE-Tox: New and in-depth database concerning ecotoxicity of nanomaterials
Katre Juganson, Angela Ivask, Irina Blinova, et al.
Beilstein Journal of Nanotechnology (2015) Vol. 6, pp. 1788-1804
Open Access | Times Cited: 133

Damage assessment for soybean cultivated in soil with either CeO2 or ZnO manufactured nanomaterials
John H. Priester, Shelly Cole Moritz, Katherine Espinosa, et al.
The Science of The Total Environment (2016) Vol. 579, pp. 1756-1768
Open Access | Times Cited: 126

Behavior and characterization of titanium dioxide and silver nanoparticles in soils
Vinayak Laxman Pachapur, Araceli Dalila Larios, Maximiliano Cledón, et al.
The Science of The Total Environment (2015) Vol. 563-564, pp. 933-943
Open Access | Times Cited: 122

Pro-inflammatory responses of RAW264.7 macrophages when treated with ultralow concentrations of silver, titanium dioxide, and zinc oxide nanoparticles
Marcella Giovanni, Junqi Yue, Lifeng Zhang, et al.
Journal of Hazardous Materials (2015) Vol. 297, pp. 146-152
Closed Access | Times Cited: 108

Uptake, Accumulation, and in Planta Distribution of Coexisting Cerium Oxide Nanoparticles and Cadmium in Glycine max (L.) Merr.
Lorenzo Rossi, Weilan Zhang, Arthur P. Schwab, et al.
Environmental Science & Technology (2017) Vol. 51, Iss. 21, pp. 12815-12824
Closed Access | Times Cited: 107

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