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52. Demonstration of a chemical transformation inside a fullerene. The reversible conversion of the allotropes of [H.sub.2]@[C.sub.60]

53. Open-Cage Fullerenes as n-Type Materials in Organic Photovoltaics: Relevance of Frontier Energy Levels, Carrier Mobility and Morphology of Different Sizable Open-Cage Fullerenes with Power Conversion Efficiency in Devices

54. 1-(3-Methoxycarbonyl)propyl-2-selenyl-[6,6]-methanofullerene as a n-Type Material for Organic Solar Cells

55. Three-Component and Nonclassical Reaction of Phosphines with Enynes and Aldehydes: Formation of γ-Lactones Featuring α-Phosphorus Ylides

56. An orifice-size index for open-cage fullerenes

57. Separation of open-cage fullerenes using nonaqueous capillary electrophoresis

58. Photophysical properties of non-homoconjugated 1,2-dihydro, 1,2,3,4-tetrahydro and 1,2,3,4,5,6-hexahydro-C60 derivatives

59. An Orifice-Size Index for Open-Cage Fullerenes

60. ChemInform Abstract: Multicomponent Reactions of Phosphines, Enynedioates and Cinnamaldimines Give γ-Lactams with a 1,3,5-Hexatriene Moiety for Facile 6π Electrocyclization: Access to Oxindoles, Isatins and Isoxazolinones

61. ChemInform Abstract: One-Pot Synthesis of Highly Substituted Polyheteroaromatic Compounds by Rhodium(III)-Catalyzed Multiple C-H Activation and Annulation

62. Novel acid-catalyzed rearrangement of methanofullerenes bearing an alpha-ylidic ester to cyclopentanofullerenes: a vinyl cyclopropane-type ring expansion

63. Synthesis of stable derivatives of C(sub 62): the first nonclassical fullerene incorporating a four-membered ring

64. Switch of Electronic Reactivity in Fullerene C60: Activation of Threetrans-4Positions via Temporary Saturation of thecis-1Positions

65. Approaches to Open Fullerenes: A 1,2,3,4,5,6-Hexaadduct of C60

67. Novel Acid-Catalyzed Rearrangement of Methanofullerenes Bearing an α-Ylidic Ester to Cyclopentanofullerenes: A Vinyl Cyclopropane-Type Ring Expansion

68. Multicomponent reactions of phosphines, diynedioates, and aryl aldehydes generated furans appending reactive phosphorus ylides through cumulated trienoates as key intermediates: a phosphine α-addition-δ-evolvement of an anion pathway

69. ChemInform Abstract: One-Pot Formation of Fluorescent γ-Lactams Having an α-Phosphorus Ylide Moiety Through Three-Component α(δ′)-Michael Reactions of Phosphines with an Enyne and N-Tosyl Aldimines

70. ChemInform Abstract: One Pot Synthesis of Bioactive Benzopyranones Through Palladium-Catalyzed C-H Activation and CO Insertion into 2-Arylphenols

71. INTERACTION OF MAGNESIUM AND LITHIUM IONS WITH [60]FULLERENE DERIVATIVES BEARING A PHOSPHORUS YLIDE GROUP

72. ChemInform Abstract: Chemo-, Regio- and Stereoselective Tricyclohexylphosphine-Catalyzed [3 + 2] Cycloaddition of Enynes with [60]Fullerene Initiated by 1,4-Michael Addition: Synthesis of Cyclopenteno[60]fullerenes and Their Electrochemical Properties

73. Fullerene Derivatives Bearing a Phosphite Ylide, Phosphonate, Phosphine Oxide, and Phosphonic Acid: Synthesis and Reactivities

74. Synthesis and Chemistry of Fullerene Derivatives Bearing Phosphorus Substituents. Unusual Reaction of Phosphines with Electron-Deficient Acetylenes and C60

75. One-pot formation of fluorescent γ-lactams having an α-phosphorus ylide moiety through three-component α(δ')-Michael reactions of phosphines with an enyne and N-tosyl aldimines

76. One pot synthesis of bioactive benzopyranones through palladium-catalyzed C-H activation and CO insertion into 2-arylphenols

77. ChemInform Abstract: Palladium-Catalyzed Oxidative Insertion of Carbon Monoxide to N-Sulfonyl-2-aminobiaryls Through C-H Bond Activation: Access to Bioactive Phenanthridinone Derivatives in One Pot

78. ChemInform Abstract: Assembly of Dimethyl Acetylenedicarboxylate and Phosphanes with Aldehydes Leading to γ-Lactones Bearing α-Phosphorus Ylides as Wittig Reagents

81. High-Performance and Highly Durable Inverted Organic Photovoltaics Embedding Solution-Processable Vanadium Oxides as an Interfacial Hole-Transporting Layer

82. ChemInform Abstract: Organic Photovoltaics Incorporating Fulleroisoquinolinones as n-Type Materials

83. Annulation of benzamides with [60]fullerene through palladium(II)-catalyzed C-H bond activation

84. Organic photovoltaics incorporating fulleroisoquinolinones as n-type materials

85. ChemInform Abstract: Synthesis and Chemistry of Fullerene Derivatives Bearing Phosphorus Substituents. Unusual Reaction of Phosphines with Electron-Deficient Acetylenes and C60

86. ChemInform Abstract: Fullerene Derivatives Bearing a Phosphite Ylide, Phosphonate, Phosphine Oxide, and Phosphonic Acid: Synthesis and Reactivities

87. Fullerene derivatives incorporating phosphoramidous ylide and phosphoramidate: synthesis and property

88. Approaches to Open Fullerenes: Synthesis and Kinetic Stability of Diels—Alder Adducts of Substituted Isobenzofurans and C60

89. The outside knows the difference inside: trapping helium by immediate reduction of the orifice size of an open-cage fullerene and the effect of encapsulated helium and hydrogen upon the NMR of a proton directly attached to the outside

90. Approaches to open fullerenes: synthesis and thermal stability of cis-1 bis(isobenzofuran) Diels-Alder adducts of C60

91. Fine tuning of the orifice size of an open-cage fullerene by placing selenium in the rim: insertion/release of molecular hydrogen

93. Palladium-Catalyzed Regio- and Stereoselective Hydrosulfonation of Propiolate Esters.

95. Demonstration of a Chemical Transformation Inside a Fullerene. The Reversible Conversion of the Allotropes of H2@C60

96. Recognition of hydrogen isotopomers by an open-cage fullerene

97. Synthesis of Stable Derivatives of C62: The First Nonclassical Fullerene Incorporating a Four-Membered Ring

100. Nucleophilic conjugate 1,3-addition of phosphines to oligoynoates.

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