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  • General Chemistry  (130)
  • Neutralization-reionization mass spectrometry  (8)
  • Transition-metal ions  (4)
  • Rate constants  (3)
  • 1
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 125 (1992), S. 1517-1520 
    ISSN: 0009-2940
    Keywords: Interstellar chemistry ; Heterocumulenes ; Charge-reversal mass spectrometry ; Neutralization-reionization mass spectrometry ; Collisional activation ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Neutralization-reionization mass spectrometry as well as charge reversal and collisional activation experiments serve to distinguish and assign the connectivities NNCCN and NCNCN to isomeric pairs of anions, neutral radicals and cations of C2N3. Loss of N2 to generate C2N+ is the critical discriminant, and the assignment is further substantiated by subjecting these fragment ions to collisional activation experiments by using tandem-mass spectrometry facilities.
    Additional Material: 6 Ill.
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  • 2
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 125 (1992), S. 2817-2819 
    ISSN: 0009-2940
    Keywords: Transition-metal ions ; Metathesis, gas-phase ; Bond activation, CH and CC ; Ion cyclotron resonance mass spectrometry ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: In contrast to the reactions of “bare” Fe+ with 1,7-octadiene (1), the chemistry of Fe(CH2)+ with 1 represents a “textbook” example for a gas-phase metathesis process to generate in a clean fashion Fe(C2H4)+. Similarly, for the formation of Fe(C6H6)+ a mechanism is suggested which is in keeping with the experimental findings. In contrast, the reactions of Fe(CH2)+ with 1 leading to Fe(C3H4)+ and Fe(C4H6)+ are so complex that a coherent description is not yet possible.
    Additional Material: 1 Tab.
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  • 3
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 124 (1991), S. 1481-1483 
    ISSN: 0009-2940
    Keywords: Interstellar chemistry ; Polycarbon nitride radicals ; Neutralization-reionization mass spectrometry ; Tandem mass spectrometry ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: The title radicals, thought to be of prime importance in the genesis of interstellar organic molecules, are accessible in the gas phase by neutralization of the corresponding CnN+ ions (n = 2-5) using tandem mass spectrometry methods (neutralization-reionization mass spectrometry). Collision-induced dissociation reactions of mass-selected CnN+ are in keeping with the connectivity of a “carbon rod” bearing a nitrogen atom at one terminus.
    Additional Material: 1 Ill.
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  • 4
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 124 (1991), S. 1679-1680 
    ISSN: 0009-2940
    Keywords: Bond activation, C — H, C — C ; Transition-metal ions ; Tandem mass spectrometry ; Geminal dialkyl effect ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Depending on the internal energy content, due to the operation of a geminal dialkyl effect, the Fe+ -mediated dehydrogenation of α,α-dimethyl-substituted ketones preferably involves the more substituted alkyl chain.
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  • 5
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 126 (1993), S. 2553-2557 
    ISSN: 0009-2940
    Keywords: Transition-metal ion chemistry ; Bond activation, C-H ; Ligand effects ; Rate constants ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: The gas-phase ion chemistry of the previously studied system Fe(n-pentanenitrile)+ is dramatically changed, when the metal ion bears substituents L (L = C2H4, C3H6, C4H6, i-C4H8, 1-C4H8, 2-C4H8, and C6H6), and the major ion-molecule reactions of Fe(L)+ with RCN (R = n-C4H9) are as follows: (i) Ligand substitution Fe(L)+ + RCN → Fe(RCN)+ + L is observed for all L studied except L = C4H6, C6H6; (ii) the formation of association complexes Fe(L)(RCN)+ takes place for all ligands L, except L = C2H4; (iii) dehydrogenation of the L is confined to L = 1-C4H8 and 2-C4H8; (iv) carbon-carbon and carbon-nitrogen bond activation of the nitrile, typical for the behaviour of bare Fe+, are absent in the reactions of all Fe(L)+ with RCN, Dehydrogenation of the nitrile is observed only for L = 1-C4H8 and 2-C4H8, and the molecular hydrogen originates exclusively from the γ/δ-position of the alkyl chain following the well-established “remote functionalization” concept. In contrast to the reaction of bare Fe+ with n-pentanenitrile, dehydrogenation in the Fe(L)(RCN)+ system is not preceded by a degenerate isomerization of RCN, bringing about equilibrations of the C(α)/C(γ) positions. Rate constants were derived and compared with those calculated by the ADO and CAP theories. All reactions of the ligated Fe(L)+ ions were found to occur with collision rate, again in contrast to the bare Fe+. Based on the ADO formalism, the dipole locking constant “c” of n-pentanenitrile was redetermined to c = 0.47.
    Additional Material: 2 Tab.
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  • 6
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 123 (1990), S. 1583-1586 
    ISSN: 0009-2940
    Keywords: Transition-metal ions ; Bond activation, CH and CC ; Olefine activation ; Tandem mass spectrometry ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: The mechanistic details (i.e. β-versus γ-hydrogen transfer) of transition-metal ion induced generation of propene from metastable ion complexes of 1,7-octadiene with M+=Cr+, Fe+, Ni+ are strongly affected by the nature of M+. For Cr+ the major reaction involves the transfer of an allylically activated hydrogen atom to M+ (γ-H transfer), followed by coupling of this hydrogen with the C3H5 unit (Scheme 3: 8 → 9→ 11 → C3H6). The hydrogen transfer 9→ 11 is preceded by substantial exchange reactions. A minor path for M+=Cr+ corresponds to the more traditional β-hydrogen transfer 9→ 10. This process, however, represents the major route for propene loss induced by M+ = Fe+, Ni+.
    Additional Material: 1 Tab.
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  • 7
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 122 (1989), S. 1803-1805 
    ISSN: 0009-2940
    Keywords: Beam experiments ; Interstellar chemistry ; Dicarbon sulfide ; Butatrienedithione ; Neutralization-reionization mass spectrometry ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: The title compounds are generated and characterized in the gas phase by mass spectrometric methods (neutralization-reionization mass spectrometry), and for dicarbon sulfide the experimental results are supported by ab initio MO calculations (HF/6-31G*).
    Additional Material: 4 Ill.
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  • 8
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 127 (1994), S. 791-793 
    ISSN: 0009-2940
    Keywords: Transition-metal ion chemistry ; O2-bond activation ; Bond dissociation energies ; Rate constants ; Ion cyclotron resonance mass spectrometry ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: The bond dissociation energies and the heats of formation of the complexes Fe+—NCH (6) and Fe+—CNH (10) have been determined. The HCN ligand in 6 is by 3 kcal/mol less strongly bound to Fe+ than HNC in 10, and complex 6 is 13 kcal/mol more stable than 10. Isomerization of 10 to 6 is difficult if not impossible to bring about as, upon collisional activation, mutual isomerization cannot compete with ligand detachment. In addition, the ion-molecule reactions of 6 and 10 with O2 give rise to distinct product distributions.
    Additional Material: 1 Ill.
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  • 9
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 123 (1990), S. 2069-2071 
    ISSN: 0009-2940
    Keywords: Interstellar chemistry ; Polycarbon disulfides ; Neutralization-reionization mass spectrometry ; Beam experiments ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: The title compounds are generated and characterized in the gas phase by tandem mass spectrometry (neutralization-reionization mass spectrometry); it is demonstrated that both even and odd-numbered polycarbon disulfides S(Cn)S(n = 2-6) are stable species. The elusiveness of the even-numbered analogues (n = 2, 4, 6) in the condensed phase must be due to facile intermolecular reactions.
    Additional Material: 2 Tab.
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  • 10
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 124 (1991), S. 141-147 
    ISSN: 0009-2940
    Keywords: Bond activation, C  -  H, C  -  C ; Transition-metal ions ; Neighbouring group participation ; Tandem mass spectrometry ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: The metastable-ion mass spectra of Fe+ complexes of alkanedinitriles NC(CH2)nCN (n = 1 - 10) exhibit six types of reactions: (1) Loss of the intact ligand to regenerate bare Fe+ as the exclusive (n = 1) or major reaction (n = 2) for the lower homologues; (2) generation of nitriles H(CH2)mCN with m = 0 - 6; (3) formation of unsaturated nitriles CH2 = CH(CH2)mCN with m = 0 - 4; (4) production of C2H4; (5) dehydrogenation, and (6) expulsion of the radicals C2H5 and CH2CN+. The branching ratios of these competing processes are governed by the chain length (CH2)n separating the two CN groups. Mechanistic insight is provided by the study of isotopomers. A comparison of the present data with the previously described behaviour of RCN/Fe+ complexes (R = alkyl) leaves no doubt that for the α,ω-alkanedinitriles it is the Fe+-mediated interaction of the two functional groups which controls the gas-phase chemistry of these organometallic systems. For example, results are presented demonstrating inter alia that losses of H2 and C2H4 proceed by completely different pathways when dinitriles serve as precursors, and either reaction is affected by neighbouring group participation. In distinct contrast, for RCN/Fe+ complexes (R = alkyl) the existing data point to common intermediates.
    Additional Material: 4 Tab.
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