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U etogo termina sushestvuyut i drugie znacheniya sm Bor U etogo termina sushestvuyut i drugie znacheniya sm B Ne sleduet putat s boriem himicheskim elementom 107 Bor himicheskij simvol B ot lat Borum himicheskij element 13 j gruppy po ustarevshej klassifikacii glavnoj podgruppy tretej gruppy IIIA vtorogo perioda periodicheskoj sistemy himicheskih elementov D I Mendeleeva s atomnym nomerom 5 Bor Berillij Uglerod 5 B Al Periodicheskaya sistema elementov5 BVneshnij vid prostogo veshestvaElementarnyj bor smes allotropnyh form Svojstva atomaNazvanie simvol nomer Bor Borum B 5Gruppa period blok 13 ustar 3 2 p elementAtomnaya massa molyarnaya massa 10 806 10 821 a e m g mol Elektronnaya konfiguraciya He 2s22p1 1s22s22p1Radius atoma 98 pmHimicheskie svojstvaKovalentnyj radius 82 pmRadius iona 23 3e pmElektrootricatelnost 2 04 shkala Polinga Stepeni okisleniya 3 0 3Energiya ionizacii pervyj elektron 800 2 8 29 kDzh mol eV Termodinamicheskie svojstva prostogo veshestvaPlotnost pri n u 2 34 g sm Temperatura plavleniya 2 348 K 2075 C Temperatura kipeniya 4 138 K 3865 C Mol teplota plavleniya 23 60 kDzh molMol teplota ispareniya 504 5 kDzh molMolyarnaya teployomkost 11 09 Dzh K mol Molyarnyj obyom 4 6 sm molKristallicheskaya reshyotka prostogo veshestvaStruktura reshyotki RomboedricheskayaParametry reshyotki a 10 17 a 65 18 AOtnoshenie c a 0 576Temperatura Debaya 1250 976 85 C 1790 33 F KProchie harakteristikiTeploprovodnost 300 K 27 4 Vt m K Nomer CAS 7440 42 85 BorB10 811s 2s 2p Prostoe veshestvo bor eto bescvetnyj seryj ili krasnyj kristallicheskij libo tyomnyj amorfnyj polumetall Izvestno bolee 10 allotropnyh modifikacij bora obrazovanie i vzaimnye perehody kotoryh opredelyayutsya temperaturoj pri kotoroj bor byl poluchen Istoriya i proishozhdenie nazvaniyaVpervye poluchen v 1808 godu francuzskimi himikami Zh Gej Lyussakom i L Tenarom nagrevaniem bornogo angidrida B2O3 s metallicheskim kaliem Cherez neskolko mesyacev bor poluchil Gemfri Devi elektrolizom rasplavlennogo B2O3 Nazvanie elementa proizoshlo ot arabskogo slova bu rak arab بورق ili persidskogo burah pers بوره kotorye ispolzovalis dlya oboznacheniya bury Nahozhdenie v prirodeSrednee soderzhanie bora v zemnoj kore sostavlyaet 4 g t Nesmotrya na eto izvestno okolo 100 sobstvennyh mineralov bora on pochti ne vstrechaetsya v kachestve primesi v drugih mineralah Eto obyasnyaetsya prezhde vsego tem chto u kompleksnyh anionov bora a imenno v takom vide on vhodit v bolshinstvo mineralov net dostatochno rasprostranyonnyh analogov Pochti vo vseh mineralah bor svyazan s kislorodom a gruppa ftorsoderzhashih soedinenij sovsem malochislenna Elementarnyj bor v prirode ne vstrechaetsya On vhodit vo mnogie soedineniya i shiroko rasprostranyon osobenno v nebolshih koncentraciyah v vide borosilikatov i boratov a takzhe v vide izomorfnoj primesi v mineralah vhodit v sostav mnogih izverzhennyh i osadochnyh porod Bor izvesten v neftyanyh i morskih vodah v morskoj vode 4 6 mg l v vodah solyanyh ozyor goryachih istochnikov i gryazevyh vulkanov Obshemirovye razvedannye zapasy bora sostavlyayut okolo 1 3 mln tonn Osnovnye mineralnye formy bora borosilikaty datolit CaBSiO4OH danburit CaB2Si2O8 boraty bura Na2B4O7 10H2O asharit MgBO2 OH gidroboracit Ca Mg B6O11 6H2O Ca2B6O11 13H2O KMg2B11O19 9H2O Takzhe razlichayut neskolko tipov mestorozhdenij bora Obrazec datolita Dalnegorskoe borosilikatnoe mestorozhdeniemestorozhdeniya boratov v lyudvigitovye i lyudvigito magnetitovye rudy kotoitovye rudy v dolomitovyh mramorah i kalcifirah asharitovye i asharito magnetitovye rudy mestorozhdeniya borosilikatov v i mestorozhdeniya borosilikatov v grejzenah vtorichnyh kvarcitah i gidrotermalnyh zhilah turmalinovye koncentracii vulkanogenno osadochnye bornye rudy otlozhennye iz produktov vulkanicheskoj deyatelnosti pereotlozhennye boratovye rudy v ozyornyh osadkah pogrebyonnye osadochnye boratovye rudy galogenno osadochnye mestorozhdeniya mestorozhdeniya boratov v galogennyh osadkah mestorozhdeniya boratov v gipsovoj shlyape nad solyanymi kupolami Osnovnye zapasy boratov v mire nahodyatsya v Turcii i SShA pri etom na Turciyu prihoditsya bolee 70 Krupnejshim proizvoditelem borsoderzhashej produkcii v mire yavlyaetsya tureckaya kompaniya angl Krupnejshee mestorozhdenie boratov Rossii nahoditsya v Dalnegorske Primore Ego razrabotku osushestvlyaet Gorno himicheskaya kompaniya Bor kotoraya zanimaet trete mesto v mire po proizvodstvu borsoderzhashej produkcii ustupaya lish Eti Mine Works i Rio Tinto Group Allotropnye modifikaciiFragmenty kristallicheskogo boraAmorfnyj poroshok bora Bor pohozh na uglerod po svoej sposobnosti obrazovyvat stabilnye kovalentno svyazannye molekulyarnye setki Dazhe neuporyadochennyj amorfnyj bor soderzhit ikosaedricheskie motivy B12 kristallicheskogo bora kotorye svyazany drug s drugom bez obrazovaniya dalnego poryadka Kristallicheskij bor ochen tvyordyj chyornyj material s temperaturoj plavleniya vyshe 2000 C On obrazuet chetyre osnovnye polimorfnye formy a romboedricheskij i b romboedricheskij a R i b R g i b tetragonalnyj b T takzhe sushestvuet a tetragonalnaya faza a T no eyo ochen trudno poluchit v chistom vide Bolshinstvo faz osnovany na ikosaedricheskih motivah B12 no g fazu mozhno opisat kak fazu tipa NaCl c chereduyushimsya raspolozheniem ikosaedrov i atomnyh par B2 g fazu mozhno poluchit putyom szhatiya drugih faz bora do 12 20 GPa i nagrevaniya do 1500 1800 C ona ostayotsya stabilnoj posle ponizheniya temperatury i davleniya T faza obrazuetsya pri analogichnyh davleniyah no pri bolee vysokih temperaturah 1800 2200 C Chto kasaetsya a i b faz to oni mogut sosushestvovat pri usloviyah okruzhayushej sredy prichyom b faza yavlyaetsya bolee stabilnoj Pri szhatii bora vyshe 160 GPa obrazuetsya faza bora s neizvestnoj strukturoj kotoraya yavlyaetsya sverhprovodyashej pri temperature 6 12 K Faza a R b R g b TSimmetriya romboedricheskaya romboedricheskaya ortorombicheskaya tetragonalnayaKolichestvo atomov v elementarnoj yachejke 12 105 28Plotnost g sm3 2 46 2 35 2 52 2 36Tvyordost po Vikkersu GPa 42 45 50 58Modul Yunga GPa 185 224 227Shirina zapreshyonnoj zony eV 2 1 6 2 1Fazovaya diagramma bora a i b romboedricheskie fazy T b tetragonalnaya faza Izvestny i drugie versii fazovoj diagrammy Struktura a R bora Struktura b R bora Struktura g bora Eksperimentalno obnaruzheny i opisany fullereno podobnye molekuly B40 i borofeny grafeno podobnye struktury Borosferen B40 Kristallicheskaya struktura borofenov a b12 borofen takzhe izvesten kak list g fazy ili list y1 6 b x3 borofen takzhe izvesten kak list y1 5 b otdelnyj list borofena Klaster B36 kotoryj mozhet rassmatrivatsya kak minimalnyj borofen frontalnyj i bokovoj vidFizicheskie svojstvaSecheniya zahvata nejtronov izotopami 10V verhnyaya krivaya i 11V nizhnyaya krivaya Chrezvychajno tvyordoe ustupaet tolko almazu nitridu bora borazonu karbidu bora splavu bor uglerod kremnij karbidu skandiya titana i hrupkoe veshestvo Shirokozonnyj poluprovodnik diamagnetik plohoj provodnik tepla U bora samyj vysokij predel prochnosti na razryv 5 7 GPa V kristallicheskoj forme imeet serovato chyornyj cvet ochen chistyj bor bescveten Izotopy bora Osnovnaya statya Izotopy bora V prirode bor nahoditsya v vide dvuh izotopov 10V 19 8 i 11V 80 2 10V imeet ochen vysokoe sechenie zahvata teplovyh nejtronov ravnoe 3837 barn dlya bolshinstva nuklidov eto sechenie blizko k edinicam ili dolyam barna prichyom pri zahvate nejtrona obrazuyutsya dva neradioaktivnyh yadra alfa chastica i litij 7 ochen bystro tormozyashiesya v srede a pronikayushaya radiaciya gamma kvanty pri etom otsutstvuet v otlichie ot analogichnyh reakcij zahvata nejtronov drugimi nuklidami B10 n B11 a Li7 2 31MeV displaystyle ce 10B n gt 11B gt alpha 7Li 2 31 MeV Poetomu 10V v sostave bornoj kisloty i drugih himicheskih soedinenij primenyaetsya v atomnyh reaktorah dlya regulirovaniya reaktivnosti a takzhe dlya biologicheskoj zashity ot teplovyh nejtronov Krome togo bor primenyaetsya v nejtron zahvatnoj terapii raka Krome dvuh stabilnyh izvestno eshyo 12 radioaktivnyh izotopov bora iz nih samym dolgozhivushim yavlyaetsya 8V s periodom poluraspada 0 77 s ProishozhdenieVse izotopy bora voznikli v mezhzvyozdnom gaze v rezultate rasshepleniya tyazhyolyh yader kosmicheskimi luchami ili pri vzryvah sverhnovyh Himicheskie svojstvaIony bora okrashivayut plamya v zelyonyj cvet Po mnogim fizicheskim i himicheskim svojstvam polumetall bor napominaet kremnij 1 Vvidu svoej himicheskoj inertnosti bor pri komnatnoj temperature vzaimodejstvuet tolko so ftorom 2B 3F2 2BF3 displaystyle ce 2B 3F2 gt 2BF3 2 Vzaimodejstvie s drugimi galogenami pri nagrevanii privodit k obrazovaniyu trigalogenidov s azotom nitrid bora BN s fosforom fosfid bora BP s uglerodom karbidy razlichnogo sostava B4C B12C3 B13C2 Pri nagrevanii v atmosfere kisloroda ili na vozduhe bor sgoraet s bolshim vydeleniem teploty s obrazovaniem oksida bora B2O3 4B 3O2 2B2O3 displaystyle ce 4B 3O2 gt 2B2O3 3 Napryamuyu s vodorodom bor ne vzaimodejstvuet odnako izvestno dovolno bolshoe chislo borovodorodov boranov razlichnogo sostava poluchaemyh pri obrabotke boridov shelochnyh ili shyolochnozemelnyh metallov kislotoj Mg3B2 6HCl B2H6 3MgCl2 displaystyle ce Mg3B2 6HCl gt B2H6 3MgCl2 4 Bor pri silnom nagrevanii proyavlyaet vosstanovitelnye svojstva Naprimer vosstanovlenie kremniya ili fosfora iz ih oksidov pri vzaimodejstvii s borom 3SiO2 4B 3Si 2B2O3 displaystyle ce 3SiO2 4B gt 3Si 2B2O3 3P2O5 10B 5B2O3 6P displaystyle ce 3P2O5 10B gt 5B2O3 6P Dannoe svojstvo bora obyasnyaetsya ochen vysokoj prochnostyu himicheskih svyazej v okside bora B2O3 5 Ustojchiv k dejstviyu rastvorov shelochej pri otsutstvii okislitelej Rastvoryaetsya v rasplave smesi gidroksida i nitrata kaliya 2B 2KOH 3KNO3 t2KBO2 3KNO2 H2O displaystyle ce 2B 2KOH 3KNO3 gt t 2KBO2 3KNO2 H2O 6 Rastvoryaetsya v goryachej azotnoj sernoj kislotah i v carskoj vodke s obrazovaniem bornoj kisloty H3BO3 3HNO3 B tH3BO3 3NO2 displaystyle ce 3HNO3 B gt t H3BO3 3NO2 7 Vzaimodejstviya oksida bora tipichnogo kislotnogo oksida s vodoj s obrazovaniem bornoj kisloty B2O3 3H2O 2H3BO3 displaystyle ce B2O3 3H2O gt 2H3BO3 8 Pri vzaimodejstvii bornoj kisloty so shelochami voznikayut soli ne samoj bornoj kisloty boraty soderzhashie anion BO33 a soderzhashie anion B4O72 naprimer 4H3BO3 2NaOH Na2B4O7 7H2O displaystyle ce 4H3BO3 2NaOH gt Na2B4O7 7H2O V 2014 g issledovatelyami iz Germanii byl poluchen bis diazaborolil berilliya v kotorom atomy berilliya i bora obrazuyut dvuhcentrovuyu dvuhelektronnuyu svyaz 2c 2e vpervye poluchennuyu i neharakternuyu dlya sosednih elementov v Periodicheskoj tablice Poluchenie1 Piroliz borovodorodov B2H6 t2B 3H2 displaystyle ce B2H6 gt t 2B 3H2 dd Dannym sposobom obrazuetsya naibolee chistyj bor kotoryj v dalnejshem ispolzuetsya dlya proizvodstva poluprovodnikovyh materialov i tonkogo himicheskogo sinteza 2 Metod metallotermii chashe proishodit vosstanovlenie magniem ili natriem B2O3 3Mg 3MgO 2B displaystyle ce B2O3 3Mg gt 3MgO 2B KBF4 3Na 3NaF KF B displaystyle ce KBF4 3Na gt 3NaF KF B dd 3 Termicheskoe razlozhenie parov bromida bora na raskalyonnoj 1000 1200 C volframovoj provoloke v prisutstvii vodoroda metod Van Arkelya 2BBr3 3H2 W2B 6HBr displaystyle ce 2BBr3 3H2 gt W 2B 6HBr dd PrimenenieElementarnyj bor Bor v vide volokon sluzhit uprochnyayushim veshestvom mnogih kompozicionnyh materialov Takzhe bor chasto ispolzuyut v elektronike v kachestve akceptornoj dobavki dlya izmeneniya tipa provodimosti kremniya Bor primenyaetsya v metallurgii v kachestve mikrolegiruyushego elementa znachitelno povyshayushego prokalivaemost stalej Bor primenyaetsya i v medicine pri bor nejtronozahvatnoj terapii sposob izbiratelnogo porazheniya kletok zlokachestvennyh opuholej Ispolzuetsya v proizvodstve termorezistorov Soedineniya bora Karbid bora primenyaetsya v kompaktnom vide dlya izgotovleniya peroksoboraty soderzhat ion B2 O2 2 OH 4 2 B4O12H8 primenyayutsya kak okislitelnye agenty Tehnicheskij produkt soderzhit do 10 4 aktivnogo kisloroda na ih osnove proizvodyat otbelivateli ne soderzhashie hlor persol i dr Otdelno takzhe stoit ukazat na to chto splavy bor uglerod kremnij obladayut sverhvysokoj tvyordostyu i sposobny zamenit lyuboj shlifovalnyj material krome almaza nitrida bora po mikrotvyordosti a po stoimosti i effektivnosti shlifovaniya ekonomicheskoj prevoshodyat vse izvestnye chelovechestvu abrazivnye materialy Splav bora s magniem diborid magniya MgB2 obladaet na dannyj moment na kakoj moment rekordno vysokoj kriticheskoj temperaturoj perehoda v sverhprovodyashee sostoyanie sredi sverhprovodnikov pervogo roda Poyavlenie vysheukazannoj stati stimulirovalo bolshoj rost rabot po etoj tematike Bornaya kislota B OH 3 shiroko primenyaetsya v atomnoj energetike v kachestve poglotitelya nejtronov v yadernyh reaktorah tipa VVER PWR na teplovyh medlennyh nejtronah Blagodarya svoim nejtronno fizicheskim harakteristikam i vozmozhnosti rastvoryatsya v vode primenenie bornoj kisloty delaet vozmozhnym plavnoe ne stupenchatoe regulirovanie moshnosti yadernogo reaktora putyom izmeneniya eyo koncentracii v teplonositele tak nazyvaemoe bornoe regulirovanie Bornaya kislota primenyaetsya takzhe v medicine i veterinarii Nitrid bora aktivirovannyj uglerodom yavlyaetsya lyuminoforom so svecheniem ot sinego do zhyoltogo cveta pod dejstviem ultrafioleta Obladaet samostoyatelnoj fosforescenciej v temnote i aktiviruetsya organicheskimi veshestvami pri nagreve do 1000 S Izgotovlenie lyuminoforov iz nitrida bora sostava BN C ne imeet promyshlennogo naznacheniya no shiroko praktikovalos himikami lyubitelyami v pervoj polovine XX veka Borosilikatnoe steklo steklo obychnogo sostava v kotorom zamenyayut shelochnye komponenty v ishodnom syre na okis bora B2O3 Ftorid bora BF3 pri normalnyh usloviyah yavlyaetsya gazoobraznym veshestvom ispolzuetsya kak katalizator v orgsinteze a takzhe kak rabochee telo v gazonapolnennyh detektorah teplovyh nejtronov blagodarya zahvatu nejtronov borom 10 s obrazovaniem yader litiya 7 i geliya 4 ioniziruyushih gaz sm reakciyu vyshe Trietilboran C6H15B ispolzuetsya dlya vosplameneniya ryada topliv odno iz kotoryh JP7 na kotoryh letali SR71 i A12 tak zhe etot reagent inogda ispolzuetsya dlya vosplameneniya raketnogo kerosina v chastnosti na raketah Falcon Heavy Borovodorody i bororganicheskie soedineniya Ryad proizvodnyh bora borovodorody yavlyayutsya effektivnymi raketnymi toplivami diboran B2H6 pentaboran tetraboran i dr a nekotorye polimernye soedineniya bora s vodorodom i uglerodom stojki k himicheskim vozdejstviyam i vysokim temperaturam kak shiroko izvestnyj plastik Karboran 22 Borazon i ego geksagidrid Nitrid bora borazon podoben po sostavu elektronov uglerodu Na ego osnove obrazuetsya obshirnaya gruppa soedinenij v chyom to podobnyh organicheskim Tak geksagidrid borazona H3BNH3 pohozh na etan po stroeniyu pri obychnyh usloviyah tvyordoe soedinenie s plotnostyu 0 78 g sm3 soderzhit pochti 20 vodoroda po masse Ego mogut ispolzovat vodorodnye toplivnye elementy pitayushie elektromobili Biologicheskaya rol320Osnovnaya statya Biologicheskaya rol bora Bor vazhnyj mikroelement neobhodimyj dlya normalnoj zhiznedeyatelnosti rastenij Nedostatok bora ostanavlivaet ih razvitie vyzyvaet u kulturnyh rastenij razlichnye bolezni V osnove etogo lezhat narusheniya okislitelnyh i energeticheskih processov v tkanyah snizhenie biosinteza neobhodimyh veshestv Pri deficite bora v pochve v selskom hozyajstve primenyayut bornye mikroudobreniya bornaya kislota bura i drugie povyshayushie urozhaj uluchshayushie kachestvo produkcii i predotvrashayushie ryad zabolevanij rastenij istochnik ne ukazan 3791 den Rol bora v zhivotnom organizme ne vyyasnena V myshechnoj tkani cheloveka soderzhitsya 0 33 1 10 4 bora v kostnoj tkani 1 1 3 3 10 4 v krovi 0 13 mg l istochnik ne ukazan 3791 den Ezhednevno s pishej chelovek poluchaet 1 3 mg bora istochnik ne ukazan 3791 den Toksichnaya doza 4 g istochnik ne ukazan 3791 den LD50 6 g kg massy tela Odin iz redkih tipov distrofii rogovicy svyazan s genom kodiruyushim predpolozhitelno reguliruyushij vnutrikletochnuyu koncentraciyu bora KommentariiUkazan diapazon znachenij atomnoj massy v svyazi s razlichnoj rasprostranyonnostyu izotopov v prirode PrimechaniyaMichael E Wieser Norman Holden Tyler B Coplen John K Bohlke Michael Berglund Willi A Brand Paul De Bievre Manfred Groning Robert D Loss Juris Meija Takafumi Hirata Thomas Prohaska Ronny Schoenberg Glenda O Connor Thomas Walczyk Shige Yoneda Xiang Kun Zhu Atomic weights of the elements 2011 IUPAC Technical Report angl Pure and Applied Chemistry 2013 Vol 85 no 5 P 1047 1078 doi 10 1351 PAC REP 13 03 02 5 fevralya 2014 goda Springer Handbook of Condensed Matter and Materials Data Eds W Martienssen H Warlimont Springer Berlin Heidelberg 2005 1121 p ISBN 3 540 44376 2 CRC Handbook of Chemistry and Physics Ed David R Lide William M Haynes Thomas J Bruno 95th ed CRC Press 2014 2704 p ISBN 978 1 48 220867 2 28 sentyabrya 2015 goda neopr Data 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