Journal of Physical Chemistry & Biophysics : Citations & Metrics Report
Articles published in Journal of Physical Chemistry & Biophysics have been cited by esteemed scholars and scientists all around the world. Journal of Physical Chemistry & Biophysics has got h-index 19, which means every article in Journal of Physical Chemistry & Biophysics has got 19 average citations.
Following are the list of articles that have cited the articles published in Journal of Physical Chemistry & Biophysics.
2024 | 2023 | 2022 | 2021 | 2020 | 2019 | 2018 | 2017 | 2016 | 2015 | 2014 | 2013 | 2012 | 2011 | |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Total published articles |
42 | 30 | 28 | 36 | 42 | 11 | 13 | 27 | 32 | 35 | 43 | 29 | 19 | 3 |
Research, Review articles and Editorials |
18 | 12 | 12 | 23 | 5 | 4 | 6 | 27 | 26 | 34 | 37 | 27 | 14 | 2 |
Research communications, Review communications, Editorial communications, Case reports and Commentary |
13 | 18 | 6 | 13 | 7 | 7 | 7 | 0 | 3 | 2 | 6 | 1 | 0 | 1 |
Conference proceedings |
0 | 1 | 61 | 11 | 0 | 11 | 135 | 189 | 45 | 142 | 110 | 122 | 0 | 0 |
Citations received as per Google Scholar, other indexing platforms and portals |
136 | 163 | 179 | 228 | 162 | 190 | 150 | 126 | 116 | 70 | 33 | 14 | 0 | 0 |
Journal total citations count | 1236 |
Journal impact factor | 6.63 |
Journal 5 years impact factor | 6.70 |
Journal cite score | 6.39 |
Journal h-index | 19 |
Journal h-index since 2019 | 16 |
Important citations (605)
Верина ЕВ. ИÑÑледование возможноÑти взаимодейÑÑ‚Ð²Ð¸Ñ Ð³Ð¸Ð´Ñ€Ð¾Ð»Ð¸Ð·Ð¾Ð²Ð°Ð½Ð½Ð¾Ð³Ð¾ коллагена Ñ Ð°Ð¼Ð¸Ð½Ð¾ÐºÐ¸Ñлотами оптичеÑкими методами (doctoral dissertation, Южно-УральÑкий гоÑударÑтвенный универÑитет (ÐИУ)). |
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Ðллахвердиев СИ, КреÑлаеÑкий ВД, Жармухамедов СК, Волошин Ð Ð, Королькова ДВ, Томо Т, ШÑнь ЦР. Хлорофиллы d и f и их роль в первичных процеÑÑах фотоÑинтеза цианобактерий (обзор). БиохимиÑ. 2016;81(3):315-328. |
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silkina a, kultschar b, llewellyn ca. far-red light acclimation for improved mass cultivation of cyanobacteria. metabolites. 2019;9(8):170. |
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badshah sl, mabkhot y, al-showiman ss. photosynthesis at the far-red region of the spectrum in acaryochloris marina. biol res. 2017;50(1):16. |
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bryant da, shen g, turner gm, soulier n, laremore tn, ho my. far-red light allophycocyanin subunits play a role in chlorophyll d accumulation in far-red light. photosynth res. 2019:1-5. |
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couto ce. chlorophyll and green color stabilization on vegetable homogenates (doctoral dissertation, isa-ul). |
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dayani s, heydarizadeh p, sabzalian mr. efficiency of light-emitting diodes for future photosynthesis. inhandbook of photosynthesis 2016 (pp. 761-783). crc press. |
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kühl m, trampe e, mosshammer m, johnson m, koren k, larkum aw. substantial near-infrared radiation-driven photosynthesis of chlorophyll f-containing cyanobacteria in a natural habitat. biorxiv. 2019:750174. |
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irwin r. isb news report october 2015. |
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ho my, bryant da. global transcriptional profiling of the cyanobacterium chlorogloeopsis fritschii pcc 9212 in far-red light: insights into the regulation of chlorophyll d synthesis. front microbiol. 2019;10:465. |
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averina sg, velichko nv, pinevich aa, senatskaya ev, pinevich av. non-a chlorophylls in cyanobacteria. photosynthetica. 2019;57(4):1109-1118. |
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Горбунов МЮ. Длинноволновые хлорофиллы в ÑеÑтоне водоемов баÑÑейна Ñредней Волги. ИзвеÑÑ‚Ð¸Ñ Ð¡Ð°Ð¼Ð°Ñ€Ñкого научного центра РоÑÑийÑкой академии наук. 2015;17(4-4). |
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bains w. hypotheses, limits, models and life. |
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hamilton tl. the trouble with oxygen: the ecophysiology of extant phototrophs and implications for the evolution of oxygenic photosynthesis. free radic biol med. 2019. |
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zhang zc, li zk, yin yc, li y, jia y, chen m etal. widespread occurrence and unexpected diversity of redâ€shifted chlorophyll producing cyanobacteria in humid subtropical forest ecosystems. environ microbiol. 2019;21(4):1497-1510. |
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ho my. characterization of far-red light photoacclimation in cyanobacteria. |
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shen g, canniffe dp, ho my, kurashov v, van der est a, golbeck jh etal. characterization of chlorophyll f synthase heterologously produced in synechococcus sp. pcc 7002. photosynth res. 2019;140(1):77-92. |
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averina s, velichko n, senatskaya e, pinevich a. far-red light photoadaptations in aquatic cyanobacteria. hydrobiologia. 2018;813(1):1-7. |
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itoh s, ohno t, noji t, yamakawa h, komatsu h, wada k etal. harvesting far-red light by chlorophyll f in photosystems i and ii of unicellular cyanobacterium strain kc1. plant cell physiol. 2015;56(10):2024-2034. |
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trampe e, kühl m. chlorophyll f distribution and dynamics in cyanobacterial beachrock biofilms. j phycol. 2016;52(6):990-996. |
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