Поддерживать
www.wikidata.ru-ru.nina.az
Tehne cij himicheskij simvol Tc ot lat Technetium himicheskij element 7 j gruppy po ustarevshej klassifikacii pobochnoj podgruppy sedmoj gruppy VIIB pyatogo perioda periodicheskoj sistemy himicheskih elementov D I Mendeleeva s atomnym nomerom 43 Tehnecij Molibden Rutenij 43 Mn Tc Re Periodicheskaya sistema elementov43 TcVneshnij vid prostogo veshestvaObrazec elementarnogo tehneciyaSvojstva atomaNazvanie simvol nomer Tehne cij Technetium Tc 43Gruppa period blok 7 ustar 7 5 d elementAtomnaya massa molyarnaya massa 97 9072 a e m g mol Elektronnaya konfiguraciya Kr 4d55s2Radius atoma 136 pmHimicheskie svojstvaKovalentnyj radius 127 pmRadius iona 7e 56 pmElektrootricatelnost 1 9 shkala Polinga Elektrodnyj potencial 0Stepeni okisleniya 1 1 2 3 4 5 6 7Energiya ionizacii pervyj elektron 702 2 7 28 kDzh mol eV Termodinamicheskie svojstva prostogo veshestvaPlotnost pri n u 11 5 g sm Temperatura plavleniya 2430 K 2157 C 3915 F Temperatura kipeniya 4538 K 4265 C 7709 F Mol teplota plavleniya 23 8 kDzh molMol teplota ispareniya 585 kDzh molMolyarnaya teployomkost 24 Dzh K mol Molyarnyj obyom 8 5 sm molKristallicheskaya reshyotka prostogo veshestvaStruktura reshyotki GeksagonalnayaParametry reshyotki a 2 737 c 4 391 AOtnoshenie c a 1 602Temperatura Debaya 453 KProchie harakteristikiTeploprovodnost 300 K 50 6 Vt m K Nomer CAS 7440 26 843 TehnecijTc 98 4d65s1 Prostoe veshestvo tehnecij radioaktivnyj perehodnyj metall serebristo serogo cveta Samyj lyogkij element ne imeyushij stabilnyh izotopov Pervyj iz sintezirovannyh himicheskih elementov Tolko okolo 18 000 tonn estestvenno obrazovavshegosya tehneciya moglo byt najdeno v lyuboj moment vremeni v zemnoj kore do nachala yadernoj ery Prirodnyj tehnecij yavlyaetsya produktom samoproizvolnogo deleniya uranovoj rudy i torievoj rudy ili produktom zahvata nejtronov v molibdenovyh rudah Naibolee rasprostranyonnym prirodnym izotopom yavlyaetsya 99Tc Ves ostalnoj tehnecij na Zemle proizvedyon sinteticheski kak produkt deleniya urana 235 i drugih delyashihsya yader v yadernyh reaktorah vseh tipov energeticheskih voennyh issledovatelskih i t p i v sluchae pererabotki otrabotannogo yadernogo topliva izvlekaetsya iz yadernyh toplivnyh sterzhnej Libo pri otsutstvii pererabotki obespechivaet ih ostatochnuyu radioaktivnost 2 mln i bolee let IstoriyaEtot razdel ne zavershyon Vy pomozhete proektu ispraviv i dopolniv ego Poiski elementa 43 S 1860 h po 1871 god rannie formy periodicheskoj tablicy predlozhennye Dmitriem Mendeleevym soderzhali razryv mezhdu molibdenom element 42 i ruteniem element 44 V 1871 godu Mendeleev predskazal chto etot nedostayushij element zajmyot pustuyushee mesto pod margancem i budet imet analogichnye himicheskie svojstva Mendeleev dal emu predvaritelnoe nazvanie ekamarganec potomu chto predskazannyj element byl na odno mesto nizhe izvestnogo elementa marganec Mnogie rannie issledovateli do i posle publikacii periodicheskoj tablicy stremilis pervymi otkryt i nazvat nedostayushij element Nemeckie himiki Valter Noddak Otto Berg i Ida Takke soobshili ob otkrytii 75 go i 43 go elementa v 1925 godu i nazvali element 43 mazuriem v chest Mazurii v vostochnoj Prussii nyne v Polshe regione gde rodilas semya Valtera Noddaka Gruppa bombardirovala kolumbit puchkom elektronov i opredelila prisutstvie 43 go elementa izuchiv rentgenovskie emissionnye spektrogrammy Dlina volny ispuskaemogo rentgenovskogo izlucheniya svyazana s atomnym nomerom sootnosheniem formuly vyvedennoj Genri Mozli v 1913 godu Komanda utverzhdala chto obnaruzhila slabyj rentgenovskij signal na dline volny sozdavaemoj 43 m elementom Bolee pozdnie eksperimentatory ne smogli povtorit otkrytie i na mnogie gody ono bylo otkloneno kak oshibochnoe Tem ne menee v 1933 godu v serii statej ob otkrytii 43 go elementa element nazyvalsya mazuriem Vopros o tom dejstvitelno li komanda Noddak v 1925 godu otkryla 43 j element vsyo eshyo obsuzhdaetsya C razvitiem yadernoj fiziki stalo ponyatno pochemu tehnecij nikak ne udayotsya obnaruzhit v prirode v sootvetstvii s pravilom Mattauha Shukareva etot element ne imeet stabilnyh izotopov Tehnecij byl sintezirovan iz molibdenovoj misheni obluchyonnoj na uskoritele ciklotrone yadrami dejteriya v Nacionalnoj laboratorii im Lourensa v Berkli v SShA a zatem byl obnaruzhen v Palermo v Italii 13 iyunya 1937 goda datiruetsya zametka italyanskih issledovatelej isp i E Segre v zhurnale Nature v kotoroj ukazano chto v etoj misheni soderzhitsya element s atomnym nomerom 43 Nazvanie tehnecij novomu elementu bylo predlozheno pervootkryvatelyami v 1947 godu Do 1947 goda pomimo predlozhennogo D I Mendeleevym nazvaniya to est podobnyj margancu primenyalos takzhe nazvanie mazurij lat Masurium oboznachenie Ma V 1952 godu Pol Merrill otkryl nabor linij poglosheniya 403 1 nm 423 8 nm 426 2 nm i 429 7 nm sootvetstvuyushij tehneciyu tochnee izotopu 98Tc v spektrah nekotoryh zvyozd S tipa v chastnosti hi Lebedya R Andromedy R Gidry omikrone Kita i osobenno intensivnye linii u zvezdy R Bliznecov eto oznachalo chto tehnecij prisutstvuet v ih atmosferah i yavilos dokazatelstvom proishodyashego v zvyozdah yadernogo sinteza nyne podobnye zvyozdy nazyvayutsya tehnecievymi zvyozdami Proishozhdenie nazvaniyaOt dr grech texnhtos iskusstvennyj otrazhaya pionerskoe otkrytie elementa putyom sinteza Nahozhdenie v prirodeNa Zemle do sozdaniya atomnoj promyshlennosti vstrechalsya tolko v sledovyh kolichestvah v molibdenovyh rudah kak produkt aktivacii molibdena kosmicheskimi luchami i v uranovyh rudah 5 10 10 g na 1 kg urana kak produkt spontannogo deleniya urana 238 V nastoyashee vremya yavlyaetsya znachimym komponentom radioaktivnyh othodov nakaplivayushijsya ezhegodno v kolichestve bolee 10 tonn god V Rossii i v drugih stranah zanimayushihsya pererabotkoj yadernogo topliva AES i propulsacionnyh atomnyh reaktorov sushestvuyut programmy po snizheniyu mobilnosti tehneciya libo po ego reaktornoj yadernoj transmutacii v stabilnyj rutenij 100 V estestvennom yadernom reaktore deleniya Oklo imeyutsya dokazatelstva togo chto za vremya ego raboty znachitelnye kolichestva tehneciya 99 byli proizvedeny i s teh por estestvennym obrazom raspalis do ruteniya 99 24 Metodami spektroskopii vyyavleno soderzhanie tehneciya v spektrah nekotoryh zvyozd krasnyh gigantov tehnecievye zvyozdy chto zastavilo astronomov skorrektirovat teoriyu razvitiya vselennoj Etot razdel ne zavershyon Vy pomozhete proektu ispraviv i dopolniv ego Fizicheskie svojstvaEtot razdel ne zavershyon Vy pomozhete proektu ispraviv i dopolniv ego Polnaya elektronnaya konfiguraciya atoma tehneciya 1s22s22p63s23p63d104s24p64d55s2 Tehnecij radioaktivnyj perehodnyj metall V kompaktnom vide on metall serebristo serogo cveta s geksagonalnoj reshyotkoj a 2 737 A s 4 391 A togda kak nanodispersnyj metall obrazuyushijsya pri vosstanovlenii na vysokodispersnom nositele ili pri elektroliticheskom osazhdenii na poverhnosti folgi imeet kubicheskuyu reshetku a 3 7 3 9 A 1 S spektre YaMR Tc 99 nanodispersnogo tehneciya otsutstvuet rassheplenie polosy poglosheniya v to vremya kak geksagonalnyj obemnyj tehnecij imeet spektr Tc 99 YaMR razdelennyj na 9 satellitov 2 Atomarnyj tehnecij imeet harakternye linii izlucheniya na dlinah voln 363 3 nm 403 1 nm 426 2 nm 429 7 nm i 485 3 nm Blagodarya vysokoj mehanicheskoj prochnosti i vysokoj temperature plavleniya yavlyaetsya horoshim materialom mishenej dlya oblucheniya v reaktore ili na uskoritele Pri nevysokom atomnom nomere ego plotnost vyshe chem u svinca Himicheskie svojstvaNahodyas v 7 gruppe Periodicheskoj sistemy D I Mendeleeva tehnecij po himicheskim svojstvam nemnogo pohozh na marganec i dovolno blizok k reniyu V soedineniyah proyavlyaet devyat celochislennyh stepenej okisleniya ot 1 do 7 i eshyo 5 drobnyh takih kak 2 5 3 1 81 1 67 1 625 1 5 4 harakternyh dlya klasternyh soedinenij tehneciya s obobshestvlyonnoj sistemoj atomov metall metall svyazannyh tem ne menee s drugimi ligandami Pri vzaimodejstvii s vodorodom pri vysokom davlenii obrazuet gidrid TcH1 3 Pri vzaimodejstvii s kislorodom obrazuet oksidy Tc2O7 i TcO2 S hlorom bromom i ftorom galogenidy TcX6 TcX5 TcX4 TcX3 TcX kotorye v srede sootvetstvuyushih galogenovodorodnyh kislot obrazuyut kompleksnye soedineniya vida K2TcX6 K2Tc2X6 K3Tc2X8 K3Tc6X14 gde K kation i dr C seroj obrazuet sulfidy TcS2 i Tc3 m3 S m2 S2 3 S2 3n 1 n n 5 togda kak Tc2S7 v chistom vide ne sushestvuet Tehnecij vhodit v sostav koordinacionnyh i elementoorganicheskih soedinenij Obrazuet polioksotehnetaty novyj podklass neorganicheskih soedinenij otnosyashijsya k klassu polioksometallatov i imeyushij sostav H7O3 4Tc20O68 4H2O V ryadu napryazhenij tehnecij stoit pravee vodoroda mezhdu medyu i ruteniem 6 On ne reagiruet s solyanoj no legko rastvoryaetsya v azotnoj kislote V takih kislotah kak sernaya ili fosfornaya tehnecij rastvoryaetsya tolko v prisutstvii okislitelya naprimer perekisi vodoroda obychno v vodnyh rastvorah s obrazovaniem pertehnetata odnako v nevodnyh sredah v zavisimosti ot uslovij obrazuet peroksoaniony peroksid tehneciya ili diperoksotehnecievuyu kislotu V ramkah universitetskih kursov dlya opredeleniya stepeni okisleniya tehneciya v soedineniyah rekomendovano ispolzovat slozhnye teorii stroeniya molekul naprimer teoriyu molekulyarnyh orbitalej ili ab initio kvantovohimicheskie metody kotorye pozvolyayut bolee tochno ocenivat konfiguracii atomov tehneciya v molekulah i raspredelenie zaryadov v nih bez privlecheniya sravnitelno ustarevshih ponyatij valentnosti i stepeni okisleniya Stroenie mnogih slozhnyh himicheskih soedinenij mozhno obyasnit tolko s ispolzovaniem sovremennyh kvantovohimicheskih metodov naprimer klasternyj hlorid tehneciya CH3 4N 3 Tc6Cl14 v kotorom 6 iz 14 atomov hlora formalno dvuhvalentny a stepeni okisleniya drobnyePoluchenieTehnecij poluchayut iz radioaktivnyh othodov himicheskim sposobom dlya ego vydeleniya ispolzuyutsya himicheskie processy so mnozhestvom trudoyomkih operacij bolshim kolichestvom reagentov i othodov V Rossii pervyj tehnecij byl poluchen v rabotah Anny Fyodorovny Kuzinoj sovmestno s rabotnikami PO Mayak Osnovnye tendencii obrasheniya s tehneciem dany v 7 str 26 Krome urana 235 tehnecij obrazuetsya pri delenii nuklidov 232Th 233U 238U 239Pu Summarnoe nakoplenie vo vseh dejstvuyushih na Zemle reaktorah za god sostavlyaet bolee 10 tonn IzotopyOsnovnaya statya Izotopy tehneciya Radioaktivnye svojstva nekotoryh izotopov tehneciya Izotop m izomer Period poluraspada Tip raspada92 4 3 min b elektronnyj zahvat93m 43 5 min Elektronnyj zahvat 18 izomernyj perehod 82 93 2 7 ch Elektronnyj zahvat 85 b 15 94m 52 5 min Elektronnyj zahvat 21 izomernyj perehod 24 b 55 94 4 9 ch b 7 elektronnyj zahvat 93 95m 60 sut Elektronnyj zahvat izomernyj perehod 4 b 95 20 chas Elektronnyj zahvat96m 52 min Izomernyj perehod96 4 3 sut Elektronnyj zahvat97m 90 5 sut Izomernyj perehod97 4 21 106 let Elektronnyj zahvat98 4 2 106 let b 99m 6 04 ch Izomernyj perehod99 2 111 105 let b 100 15 8 s b 101 14 3 min b 102 4 5 min 5 s b g b 103 50 s b 104 18 min b 105 7 8 min b 106 37 s b 107 29 s b PrimenenieShiroko ispolzuetsya v yadernoj medicine dlya issledovanij mozga serdca shitovidnoj zhelezy lyogkih pecheni zhyolchnogo puzyrya pochek kostej skeleta krovi a takzhe dlya diagnostiki opuholej v kompyuternoj tomografii Pertehnetaty soli tehnecievoj kisloty HTcO4 obladayut antikorrozionnymi svojstvami tak kak ion TcO4 v otlichie ot ionov MnO4 i ReO4 yavlyaetsya samym effektivnym ingibitorom korrozii dlya zheleza i stali Tehnecij mozhet byt ispolzovan kak resurs dlya polucheniya ruteniya esli posle vydeleniya iz OYaT ego podvergnut yadernoj transmutacii Biologicheskaya rolKak element prakticheski otsutstvuyushij na Zemle tehnecij ne igraet estestvennoj biologicheskoj roli S himicheskoj tochki zreniya tehnecij i ego soedineniya malotoksichny Opasnost tehneciya vyzyvaetsya ego radiotoksichnostyu Tehnecij pri vvedenii v organizm raspredelyaetsya po raznomu v zavisimosti ot himicheskoj formy v kotoroj on vvoditsya Vozmozhna adresnaya dostavka tehneciya v odin konkretnyj organ pri ispolzovanii specialnyh radiofarmpreparatov Eto yavlyaetsya osnovoj ego shirochajshego primeneniya v radiodiagnostike yadernoj medicine Prostejshaya forma tehneciya pertehnetat pri vvedenii popadaet pochti vo vse organy no v osnovnom zaderzhivaetsya v zheludke i shitovidnoj zheleze Porazheniya organov iz za ego myagkogo b izlucheniya s dozoj do 0 000001 R ch mg nikogda ne nablyudalos Pri rabote s tehneciem ispolzuyutsya vytyazhnye shkafy s zashitoj ot ego b izlucheniya ili germetichnye boksy PrimechaniyaTechnetium physical properties angl WebElements Data obrasheniya 16 avgusta 2013 26 iyulya 2013 goda K E German 200 tysyach let tomu vperyod V chyom unikalnost tehneciya i pochemu on tak vazhen dlya yadernoj mediciny i atomnoj energetiki 200000 years ahead What is unique about technetium and why is it so important for nuclear medicine and nuclear energy rus Vestnik ROSATOMA zhurnal 2019 10 iyunya t 5 5 S 26 39 German 200000 let tomu vpered tekst rus researchgate ROSATOM 2019 Data obrasheniya 28 avgusta 2021 28 avgusta 2021 goda Jonge Pauwels E K 1996 Technetium the missing element European Journal of Nuclear Medicine 23 3 336 44 doi 10 1007 BF00837634 PMID 8599967 van der Krogt P Technetium neopr Elentymolgy and Elements Multidict Data obrasheniya 5 maya 2009 23 yanvarya 2010 goda Emsley J Nature s Building Blocks An A Z Guide to the Elements Oxford England UK Oxford University Press 2001 P 423 ISBN 978 0 19 850340 8 ot 26 dekabrya 2019 na Wayback Machine Armstrong J T 2003 Technetium Chemical amp Engineering News 81 36 110 doi 10 1021 cen v081n036 p110 6 oktyabrya 2008 Data obrasheniya 11 noyabrya 2009 Nies K A 2001 Arhivirovano iz originala 9 avgusta 2009 Data obrasheniya 5 maya 2009 a href wiki D0 A8 D0 B0 D0 B1 D0 BB D0 BE D0 BD Cite news title Shablon Cite news cite news a Ukazan bolee chem odin parametr accessdate and access date spravka Weeks M E 1933 The discovery of the elements XX Recently discovered elements Journal of Chemical Education 10 3 161 170 Bibcode 1933JChEd 10 161W doi 10 1021 ed010p161 Zingales R 2005 From Masurium to Trinacrium The Troubled Story of Element 43 Journal of Chemical Education 82 2 221 227 Bibcode 2005JChEd 82 221Z doi 10 1021 ed082p221 Perrier C Segre E Radioactive Isotopes of Element 43 angl Nature 1937 Vol 140 P 193 194 doi 10 1038 140193b0 Trifonov D N Ot elementa 43 do antiprotona Himiya 2005 19 7 aprelya 2014 goda Perrier C Segre E Technetium The Element of Atomic Number 43 angl Nature 1947 Vol 159 no 4027 P 24 doi 10 1038 159024a0 Bibcode 1947Natur 159 24P PMID 20279068 Himiya 1941 god Kalendar spravochnik Sost E Lihtenshtejn M OGIZ Gosudarstvennoe socialno ekonomicheskoe izdatelstvo 1941 S 299 303 Shaviv G The Synthesis of the Elements The Astrophysical Quest for Nucleosynthesis and What It Can Tell Us About the Universe angl Springer 2012 P 266 6 aprelya 2015 goda Paul W Merrill Spectroscopic Observations of Stars of Class S angl The Astrophysical Journal journal IOP Publishing 1952 Vol 116 P 21 26 doi 10 1086 145589 Bibcode 1952ApJ 116 21M 7 aprelya 2014 goda Tehnecij Enciklopedicheskij slovar yunogo himika 2 e izd Sost V A Kricman V V Stanco M Pedagogika 1990 S 241 242 ISBN 5 7155 0292 6 S El Wear K E German V F Peretrukhin Sorption of technetium on inorganic sorbents and natural minerals angl Journal of Radioanalytical and Nuclear Chemistry 1992 02 01 Vol 157 iss 1 P 3 14 ISSN 1588 2780 doi 10 1007 BF02039772 V P Tarasov Yu B Muravlev K E German amp N N Popova 99Tc NMR of Supported Technetium Nanoparticles angl Doklady Physical Chemistry statya 2001 15 March vol 377 no 3 P 71 76 23 yanvarya 2022 goda V V Kuznetsov M A Volkov K E German E A Filatova O A Belyakov A L Trigub Electroreduction of pertechnetate ions in concentrated acetate solutions angl Journal of Electroanalytical Chemistry statya 2020 15 July vol 869 23 yanvarya 2022 goda Lide David R Line Spectra of the Elements The CRC Handbook CRC press pp 10 70 1672 2004 2005 ISBN 978 0 8493 0595 5 A M Fedoseev A A Bessonov A V Sitanskaia M A Volkov A G Volkova M N Sokolova D V Ryabkov K K Korchenkin K E German Preparation of Tc NpO2 metal ceramic compositions and their imitators Re Th Nd for long term safe storage of long life fission products angl Journal of Nuclear Materials 2023 12 Vol 587 P 154711 doi 10 1016 j jnucmat 2023 154711 Mihail Volkov Anton Novikov Anastasiya Sitanskaya Nadezhda Legkodimova Darya Frolkova Ramiz Aliev Konstantin German Istoriya razrabotki ciklotronnyh mishenej iz tehneciya i polucheniya ruteniya 97 po reakcii 99Tc p 3n 97Ru v rabotah IFHE i OIYaI v knige From the origins to the present in physical chemistry radiochemistry and electrochemistry according to the work of scientific and educational centers To the 70th Anniversary of the Laboratory of Radiochemical Research rus K E German M Izdatelskij dom Granica 2022 S 39 108 720 s Di Zhou Dmitrii V Semenok Mikhail A Volkov Ivan A Troyan Alexey Yu Seregin Ilya V Chepkasov Denis A Sannikov Pavlos G Lagoudakis Artem R Oganov Konstantin E German Synthesis of technetium hydride mathrm Tc mathrm H 1 3 at 27 GPa Physical Review B 2023 02 06 T 107 vyp 6 S 064102 doi 10 1103 PhysRevB 107 064102 Joseph A RARD et all NEA TDB CHEMICAL THERMODYNAMICS OF TECHNETIUM angl J Rard Livermore California Bruxels Netherland NUCLEAR ENERGY AGENCY ORGANISATION FOR ECONOMIC CO OPERATION AND DEVELOPMENT 1999 Anton P Novikov Karim A Zagidullin Mikhail A Volkov Konstantin E German Iurii M Nevolin Mikhail S Grigoriev Influence of the organic cation on the formation of hexahalotechnetates X ray thermal and comparative analyses of non covalent interactions angl Dalton Transactions 2023 11 28 Vol 52 iss 46 P 17538 17547 ISSN 1477 9234 doi 10 1039 D3DT03235C RAN IFHE V IFHE RAN sintezirovali i issledovali novye geksagalotehnetaty rus Naked Science 13 dekabrya 2023 Data obrasheniya 23 maya 2024 Anton P Novikov Karim A Zagidullin Mikhail A Volkov Konstantin E German Iurii M Nevolin Mikhail S Grigoriev Influence of the organic cation on the formation of hexahalotechnetates X ray thermal and comparative analyses of non covalent interactions angl Dalton Transactions 2023 Vol 52 iss 46 P 17538 17547 ISSN 1477 9226 doi 10 1039 D3DT03235C German K E Kryuchkov S V Kuzina A F Spicyn V I Sintez i svojstva novyh hloridnyh mnogoyadernyh klasterov tehneciya rus Doklady Akademii nauk SSSR zhurnal 1986 T 288 2 S 381 384 3 iyulya 2022 goda German K E Lebedev V V Belova E V Kak krasnaya modifikaciya tehnecievoj kisloty okazalas pervym primerom polioksotehnetata v himii tehneciya okonchatelno razreshiv vopros stoyavshij bolee 70 let rus RETROANALIZ I GENEZIS PODHODOV K REShENIYu PROBLEM FIZIChESKOJ HIMII RADIOHIMII I ELEKTROHIMII V RABOTE NAUChNO OBRAZOVATELNYH CENTROV Sbornik kollektivnaya monografiya 2021 S 452 478 28 fevralya 2023 goda Konstantin E German Alexander M Fedoseev Mikhail S Grigoriev Gayane A Kirakosyan Thomas Dumas Christophe Den Auwer Philippe Moisy Keith V Lawler Paul M Forster Frederic Poineau A 70 Year Old Mystery in Technetium Chemistry Explained by the New Technetium Polyoxometalate H 7 O 3 4 Tc 20 O 68 4H 2 O angl Chemistry A European Journal 2021 09 24 Vol 27 iss 54 P 13624 13631 ISSN 1521 3765 0947 6539 1521 3765 doi 10 1002 chem 202102035 D N Tumanova K E German V F Peretrukhin A Yu Tsivadze Formation of technetium peroxides in anhydrous sulfuric acid angl Doklady Physical Chemistry 2008 05 01 Vol 420 iss 1 P 114 117 ISSN 1608 3121 doi 10 1134 S0012501608050096 Frederic Poineau Konstantin E German Benjamin P Burton Pye Philippe F Weck Eunja Kim Olga Kriyzhovets Aleksey Safonov Viktor Ilin Lynn C Francesconi Alfred P Sattelberger Kenneth R Czerwinski Speciation of technetium peroxo complexes in sulfuric acid revisited angl Journal of Radioanalytical and Nuclear Chemistry 2015 02 01 Vol 303 iss 2 P 1163 1167 ISSN 1588 2780 doi 10 1007 s10967 014 3434 1 Frederic Poineau Philippe F Weck Benjamin P Burton Pye Eunja Kim Lynn C Francesconi Alfred P Sattelberger Konstantin E German Kenneth R Czerwinski Diperoxo Pertechnetic Acid Characterized by Spectroscopic and Quantum Chemical Studies angl European Journal of Inorganic Chemistry 2013 09 03 Vol 2013 iss 26 P 4595 4600 ISSN 1434 1948 doi 10 1002 ejic 201300383 German K E Kryuchkov S V Kuzina A F Spicyn V I Sintez i svojstva novyh hloridnyh klasterov tehneciya rus Doklady Akademii Nauk SSSR zhurnal 1986 1 fevralya t 288 2 S 381 384 PDF Proceedings and selected lectures of the 10th International Symposium on Technetium and Rhenium Science and Utilization October 3 6 2018 Moscow Russia Eds K German X Gaona M Ozawa Ya Obruchnikova E Johnstone A Maruk M Chotkowski I Troshkina A Safonov Moscow Publishing House Granica 2018 525 p ISBN 978 5 9933 0132 7 angl ResearchGate Data obrasheniya 21 yanvarya 2019 9 dekabrya 2021 goda Troshkina I D Ozava M German K E Razvitie himii tehneciya glava v sbornike Redkie elementy v yadernom toplivnom cikle str 39 54 Moskva Izdatelstvo RHTU im D I Mendeleeva NuDat 2 8 neopr National Nuclear Data Center Data obrasheniya 7 dekabrya 2020 27 noyabrya 2020 goda I A Leenson Tehnecij chto novogo Himiya i zhizn XXI vek 2008 12 V F Peretrukhin S I Rovnyi V V Ershov K E German and A A Kozar Preparation of technetium metal for transmutation into ruthenium angl researchgate net MAIK maj 2002 Data obrasheniya 27 maya 2021 15 yanvarya 2022 goda Shegay P Leontyev A Baranovskii D Davydov G Poluektova M Grivtsova L et al World s First Experience of the Low Dose Radionuclide Inhalation Therapy in the Treatment of COVID 19 Associated Viral Pneumonia Phase 1 2 Clinical Trial Current Radiopharmaceuticals 2023 T 16 vyp 3 S 243 252 ISSN 1874 4729 doi 10 2174 1874471016666230307113045 LiteraturaVeneckij S I Vozrozhdennyj dinozavr Tehnecij O redkih i rasseyannyh Rasskazy o metallah rus Moskva Metallurgiya 1980 184 s 200 000 ekz SsylkiV rodstvennyh proektahZnacheniya v VikislovareMediafajly na Vikisklade Tehnecij v Populyarnoj biblioteke himicheskih elementov Rossijskij kollektiv himikov razrabotal effektivnyj elektrohimicheskij metod sinteza tehneciya RT 30 iyulya 2020
Вершина