American Journal of Advanced Drug Delivery Open Access

  • ISSN: 2321-547X
  • Journal h-index: 22
  • Journal CiteScore: 9.36
  • Journal Impact Factor: 5.76
  • Average acceptance to publication time (5-7 days)
  • Average article processing time (30-45 days) Less than 5 volumes 30 days
    8 - 9 volumes 40 days
    10 and more volumes 45 days

Articles published in American Journal of Advanced Drug Delivery have been cited by esteemed scholars and scientists all around the world. American Journal of Advanced Drug Delivery has got h-index 22, which means every article in American Journal of Advanced Drug Delivery has got 22 average citations.

Following are the list of articles that have cited the articles published in American Journal of Advanced Drug Delivery.

  2021 2020 2019 2018 2017

Year wise published articles

31 18 25 9 14

Year wise citations received

253 232 219 180 151
Journal total citations count 1671
Journal impact factor 5.76
Journal 5 years impact factor 9.29
Journal cite score 9.36
Journal h-index 22
Journal Impact Factor 2020 formula
IF= Citations(y)/{Publications(y-1)+ Publications(y-2)} Y= Year
Journal 5-year Impact Factor 2020 formula
Citations(2016 + 2017 + 2018 + 2019 + 2020)/
{Published articles(2016 + 2017 + 2018 + 2019 + 2020)}
Journal citescore
Citescorey = Citationsy + Citationsy-1 + Citationsy-2 + Citations y-3 / Published articlesy + Published articlesy-1 + Published articlesy-2 + Published articles y-3
Important citations
Sulca-Diaz, R. O., Peñafiel-Palomino, R. P., & Juan, A. (2017). Conocimiento y actitudes de las gestantes sobre los principales signos y síntomas de alarma en el embarazo, hospital regional de Ica, enero 2017. Revista médica panacea, 6(1).
Nahidi, F., & Hajifoghaha, M. (2018). Maternal Mortality Ratio in Eastern Mediterranean Region: A Priority of Reproductive Health. Int J Women's Health Reprod Sci.
Abdurashid, N., Ishaq, N., Ayele, K., & Ashenafi, N. (2018). Level of awareness on danger signs during pregnancy and associated factors, among pregnant mothers, Dire Dawa administrative public health facilities, Eastern Ethiopia. Clin Mother Child Health, 15(1).
Nurgi, S., Tachbele, E., Dibekulu, W., & Wondim, M. A. (2017). Knowledge, attitude and practice of obstetric danger signs during pregnancy in Debre Berhan, Ethiopia. Health Science Journal, 11(6), 1-7.
Geleto, A., Chojenta, C., Musa, A., & Loxton, D. (2019). WOMEN's Knowledge of Obstetric Danger signs in Ethiopia (WOMEN's KODE): a systematic review and meta-analysis. Systematic reviews, 8(1), 1-14.
Ossai, E. N., & Uzochukwu, B. S. (2015). Knowledge of danger signs of pregnancy among clients of maternal health service in urban and rural primary health centres of Southeast Nigeria. J Community Med Health Educ, 5(337), 2161-0711.
Wulandaria, R. D., & Laksonob, A. D. (2020). Education as predictor of the knowledge of pregnancy danger signs in Rural Indonesia. Education, 13(1).
Memon, R., Memon, A. A., Sirajuddin, Balouch, A., Memon, K., Sherazi, S. T. H., ... & Kumar, R. (2020). Ultrasensitive colorimetric detection of Hg2+ in aqueous media via green synthesis by Ziziphus mauritiana Leaf extract-based silver nanoparticles. International Journal of Environmental Analytical Chemistry, 1-16.
Saffar, R., Athira, P. V., Kalita, K., Manuel, S. G., & Pradeep, N. (2021). Nanoparticle Synthesis from Biowaste and Its Potential as an Antimicrobial Agent.
Sengupta, A., & Sarkar, A. (2021). Synthesis and characterization of nanoparticles from neem leaves and banana peels: a green prospect for dye degradation in wastewater. Ecotoxicology, 1-12.
Mundekkad, D., Kameshwari, G. V., Karchalkar, P., & Koti, R. (2021). The catalytic and ROS-scavenging activities of green synthesized, antiferromagnetic ?-Fe2O3 nanoparticle with a prismatic octahedron morphology from pomegranate rind extract. Nanotechnology.
Rajmohan, D., Ranjithkumar, R., Logankumar, K., Sagadevan, P., Chandrashekar, B., & Yamuna, R. (2016). GREEN ROUTE SYNTHESIZED SILVER NANOPARTICLES: AS POTENTIAL ANTIBACTERIAL MATERIAL. Kongunadu Research Journal, 3(1), 73-75.
Moyo, J. (2016). Synthesis and characterization of silver nanoparticles using wild cucumis anguria (Doctoral dissertation, BUSE).
Oladipo, I. C., & Ogunsona, S. B. The Utilization of Agro-Waste: A Nanobiotechnology.
Gad, H. A., Tayel, A. A., Al-Saggaf, M. S., Moussa, S. H., & Diab, A. M. (2021). Phyto-fabrication of selenium nanorods using extract of pomegranate rind wastes and their potentialities for inhibiting fish-borne pathogens. Green Processing and Synthesis, 10(1), 529-537.
Al-Abdeen, S. S. Z. Effect of silver nanoparticles prepared with pomegranate peel extract on antibiotic resistant Gram negative bacteria.
Al Hindawi, A. M., Joudah, I., Hamzah, S., & Tarek, Z. (2019, July). Plant extract: safe way for fabrication silver nanoparticles. In IOP Conference Series: Materials Science and Engineering (Vol. 571, No. 1, p. 012069). IOP Publishing.
Diel, J. C., Franco, D. S., Igansi, A. V., Cadaval Jr, T. R., Pereira, H. A., Nunes, I. D. S., ... & Dotto, G. L. (2021). Green synthesis of carbon nanotubes impregnated with metallic nanoparticles: Characterization and application in glyphosate adsorption. Chemosphere, 131193.
Shaker, W. M., & Hegazy, E. M. (2021). Effect of systemic administration of silver nanoparticles in treatment of experimental periodontitis in albino rats. Dental Science Updates, 2(2), 175-184.
Saad, P. G., Castelino, R. D., Ravi, V., Al-Amri, I. S., & Khan, S. A. (2021). Green synthesis of silver nanoparticles using Omani pomegranate peel extract and two polyphenolic natural products: characterization and comparison of their antioxidant, antibacterial, and cytotoxic activities. Beni-Suef University Journal of Basic and Applied Sciences, 10(1), 1-10.