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EJNMMI Radiopharmacy and Chemistry : Impact Factor & More

eISSN: 2365-421XpISSN: 2365-421X
JournalOpen Access

Aims and Scope of EJNMMI Radiopharmacy and Chemistry

EJNMMI Radiopharmacy and Chemistry publishes new research in the field of development of new imaging and radionuclide-based therapeutic agents for application in nuclear medicine and molecular imaging. The journal provides a platform for chemists, pharmacists and basic scientists to present their views and scientific work. In addition, the journal provides insight into novel concepts of imaging or radionuclide-based therapeutic agent applications of relevance for the whole molecular imaging community. The journal reports original research articles, review papers, guidelines on the application of imaging or radionuclide therapy agents, editorials, and letters to the editor. Research articles on novel radiochemistry, new radiopharmaceuticals including their first biological evaluation, molecular imaging agents including optical imaging, MRI, and hybrid probes, are the main focus of the journal. To translate imaging and radionuclide therapy agents to the clinic, legislative issues related to their production and safety can be presented as well in the form of guidelines or position papers. Less

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EJNMMI Radiopharmacy and Chemistry Journal Specifications

Indexed in the following public directories

  • Web of Science Web of Science
  • Scopus Scopus
  • DOAJ DOAJ
  • SJR SJR
Overview
Publisher Springer Nature
Language English
Frequency Continuous publication
Article Processing ChargesGBP 1190 | USD 1890
Publication Time5
Editorial Review ProcessBlind peer review
General Details
LanguageEnglish
Society/Institute/SponsorEuropean Association of Nuclear Medicine (EANM)
FrequencyContinuous publication
Publisher URLVisit website
Website URLVisit website
Publication Details
PlagiarismVisit website
Publication Time 5
Waiver PolicyVisit website
Editorial Review Detail
Editorial TeamVisit website
Review ProcessBlind peer review
Review UrlVisit website
Information for authors
Author instructionsVisit website
Copyright DetailsVisit website
Deposit PolicySherpa/Romeo
License typeCC BY
OA statementVisit website
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Recently Published Papers in EJNMMI Radiopharmacy and Chemistry

Stable core-encapsulation of indium-111 in crosslinked polyionic complex micelles and assessment of its biodistribution
  • 4 Aug 2026
  • EJNMMI Radiopharmacy and Chemistry
Inline gamma spectroscopy and liquid scintillation HPLC reveal daughters in 225Ac-radiopharmaceutical
  • 21 Jul 2026
  • EJNMMI Radiopharmacy and Chemistry
Synthesis and in vitro evaluation of pharmacokinetically optimized 99mTc-labeled cholecystokinin-2 receptor-targeted peptides for improved SPECT imaging.
  • 20 Jul 2026
  • EJNMMI radiopharmacy and chemistry
Optimization of [18F]FBPA production for clinical translation through precursor development and manufacturing route evaluation.
  • 9 Jul 2026
  • EJNMMI radiopharmacy and chemistry
Rapid assessment of target-binding fractions in molecular imaging agents using size-exclusion HPLC.
  • 4 Jul 2026
  • EJNMMI radiopharmacy and chemistry
Synthesis and in vivo evaluation of a bifunctional, glutamic acid derived chelator for the 203/212Pb theranostic pair.
  • 4 Jul 2026
  • EJNMMI radiopharmacy and chemistry
Stable core-encapsulation of indium-111 in crosslinked polyionic complex micelles and assessment of its biodistribution
  • 4 Aug 2026
  • EJNMMI Radiopharmacy and Chemistry
Inline gamma spectroscopy and liquid scintillation HPLC reveal daughters in 225Ac-radiopharmaceutical
  • 21 Jul 2026
  • EJNMMI Radiopharmacy and Chemistry
Synthesis and in vitro evaluation of pharmacokinetically optimized 99mTc-labeled cholecystokinin-2 receptor-targeted peptides for improved SPECT imaging.
  • 20 Jul 2026
  • EJNMMI radiopharmacy and chemistry
Optimization of [18F]FBPA production for clinical translation through precursor development and manufacturing route evaluation.
  • 9 Jul 2026
  • EJNMMI radiopharmacy and chemistry
Rapid assessment of target-binding fractions in molecular imaging agents using size-exclusion HPLC.
  • 4 Jul 2026
  • EJNMMI radiopharmacy and chemistry
Synthesis and in vivo evaluation of a bifunctional, glutamic acid derived chelator for the 203/212Pb theranostic pair.
  • 4 Jul 2026
  • EJNMMI radiopharmacy and chemistry

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