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artykuł naukowy мақолаи илмӣ vitskapeleg artikkel 2001年學術文章 naučni članak article científic wetenschappelijk artikel articolo scientifico 2001年学术文章 επιστημονικό άρθρο videnskabelig artikel scientific article published in December 2001 wissenschaftlicher Artikel 2001年学术文章 2001년 논문 مقالة علمية نشرت في ديسمبر 2001 artikulong pang-agham научная статья vedecký článok article scientific scientific article published in December 2001 article scientifique 2001年学术文章 2001年學術文章 tieteellinen artikkeli 2001年学术文章 2001年学术文章 artículo científico publicado en 2001 научни чланак ডিসেম্বর ২০০১-এ প্রকাশিত বৈজ্ঞানিক নিবন্ধ scientific article published in December 2001 2001年の論文 articol științific artigo científico scienca artikolo vědecký článek სამეცნიერო სტატია artigo científico 2001年學術文章 artículu científicu espublizáu en 2001 artikel ilmiah vetenskaplig artikel vitenskapelig artikkel наукова стаття, опублікована в грудні 2001 2001年學術文章 teaduslik artikkel 2001年学术文章 บทความทางวิทยาศาสตร์ מאמר מדעי научна статия artikull shkencor bilimsel makale tudományos cikk 2001 nî lūn-bûn bài báo khoa học научни чланак artigo científico 2001年學術文章
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Reactivity in polynuclear transition metal chemistry as a means to obtain high-spin molecules: substitution of mu 4-OH- by eta 1,mu 4-N3- increases nine times the ground-state S value of a nonanuclear nickel(II) cage. Reactivity in polynuclear transition metal chemistry as a means to obtain high-spin molecules: substitution of mu 4-OH- by eta 1,mu 4-N3- increases nine times the ground-state S value of a nonanuclear nickel(II) cage.
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Reactivity in polynuclear transition metal chemistry as a means to obtain high-spin molecules: substitution of mu 4-OH- by eta 1,mu 4-N3- increases nine times the ground-state S value of a nonanuclear nickel(II) cage. Reactivity in polynuclear transition metal chemistry as a means to obtain high-spin molecules: substitution of mu 4-OH- by eta 1,mu 4-N3- increases nine times the ground-state S value of a nonanuclear nickel(II) cage.
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Reactivity in polynuclear transition metal chemistry as a means to obtain high-spin molecules: substitution of mu 4-OH- by eta 1,mu 4-N3- increases nine times the ground-state S value of a nonanuclear nickel(II) cage. Reactivity in polynuclear transition metal chemistry as a means to obtain high-spin molecules: substitution of mu 4-OH- by eta 1,mu 4-N3- increases nine times the ground-state S value of a nonanuclear nickel(II) cage.
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Reactivity in polynuclear transition metal chemistry as a means to obtain high-spin molecules: substitution of mu 4-OH- by eta 1,mu 4-N3- increases nine times the ground-state S value of a nonanuclear nickel(II) cage
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