The hydroxyl fullerene salt AgmC60(OH)n(NO3)m was prepared by reaction of fullerenols and silver nitrate,and characterized by elemental analysis,IR and XPS.In addition,the thermostability of the compound...The hydroxyl fullerene salt AgmC60(OH)n(NO3)m was prepared by reaction of fullerenols and silver nitrate,and characterized by elemental analysis,IR and XPS.In addition,the thermostability of the compound has been studied by thermoanalysis.The result show that the number of n is about 18-19,which is the same as that in C60(OH)n,the number of m is 9-10,and the temperature of AgmC60(OH)n(NO3)m decompounding to carbon dioxide is lower than that of C60(OH)展开更多
This paper uses the density functional theory under generalised gradient approximation to analyse the stability, frontier orbitals, bond character, and static linear polarizability of H20@C80F60, which has not been is...This paper uses the density functional theory under generalised gradient approximation to analyse the stability, frontier orbitals, bond character, and static linear polarizability of H20@C80F60, which has not been isolated, as well as those of the synthesised H20@C80H60. The H20@C80F60 should be considerably stable by analysing its energy and aromaticity. The inside H and outside X will play different role in the chemical reaction involving H20@C80X60 (X = H and F). The covalence of C H bond is in the order that the inside C H bond of H20@C80F60〉 the inside C H bond of H20@C80H60〉 the outside C-H bond of H20@C80H60, whereas the C-F bond of H20@C80F60 have both the covalent and ionic characters. The static linear polarizabilities of Cso and H20@C80X60 (X =H and F) are all isotropic.展开更多
In this paper water-soluble C 60 derivative was iodolabelled radioactively with Iodogen method. The labelled yield was measured by Silica GF254 TLC. The effects of pH value, time, temperature and the amount of Iodogen...In this paper water-soluble C 60 derivative was iodolabelled radioactively with Iodogen method. The labelled yield was measured by Silica GF254 TLC. The effects of pH value, time, temperature and the amount of Iodogen on the labelled yield were studied. 125 I-C 60 (OH) x O y was purified by Sephadex G-25 column chromatography and then the stability of 125 I-C 60 (OH) x O y was examined. The results showed that the radiochemical purity of 125 I-C 60 (OH) xO y solution with 2% benzylalcohol remained 82.7% after 43h.展开更多
The fullerene complex,C60 RuH2(CO)(PPh3),has been prepared and characterize d by elemental analyses,IR and electronic spectra.In addition,the redox property of t he complex has been studied by cyclic voltammetry.The r...The fullerene complex,C60 RuH2(CO)(PPh3),has been prepared and characterize d by elemental analyses,IR and electronic spectra.In addition,the redox property of t he complex has been studied by cyclic voltammetry.The results s how that the reduction potential of C60 RuH2(CO)(PPh3)is more negative than that of C60.Meanwhile,with the extent of the complex reduction get to increace the stability of the complex ion is on the decrease.展开更多
The biological behavior of fullerene derivatives shows their considerable potential application in medicine field. To understand the biodistribution of C60 derivatives as drugs or drug carriers, a simple water-soluble...The biological behavior of fullerene derivatives shows their considerable potential application in medicine field. To understand the biodistribution of C60 derivatives as drugs or drug carriers, a simple water-soluble derivative C60(OH)x(O)y was labeled with 99mTc. A r-counter and a single photo emission computed tomography (SPECT) were used to assess the biodistribution and metabolism of the labeled compound in mice and rabbits, respectively. The results showed that the compound could be absorbed rapidly by tissues, especially by coronal bone, breastbone, backbone, extremity honeycomb, liver and spleen. The clearance was slow from all tissues except for brain. The compound might be excreted through urine and enteron. The biodistribution shows some difference from that of Yamago et al. In this note, we discuss the possible reason leading to the difference. Further study is needed to find out to what extent the C60 itself determines the biodistribution of derivatives.展开更多
Environmental stress factors could lead to the excess generation of reactive oxygen species(ROS) that induces various forms of skin damage related to oxidative stress. Polyhydroxylated fullerene derivative C(60)...Environmental stress factors could lead to the excess generation of reactive oxygen species(ROS) that induces various forms of skin damage related to oxidative stress. Polyhydroxylated fullerene derivative C(60)(OH)n, acting as an effective agent for prevention of skin aging, is widely used in the lotion and sunscreens in the field of cosmetics, but rarely used in the masks. In this study, we prepared C(60)(OH)n loaded nanofibrous membranes to protect human keratinocyte cells from ROS-associated damage and suppress the elevation of intracellular ROS and Ca(2+) along with the apoptotic cell death. Two FDAapproved biodegradable polymers, PLGA and PCL, have been used for making the electrospun nanofibers,with C(60)(OH)n added to the polymers as an antioxidant. The nanofibrous membranes with good biocompatibility might be potentially applied in clinical practice to reduce skin aging.展开更多
文摘The hydroxyl fullerene salt AgmC60(OH)n(NO3)m was prepared by reaction of fullerenols and silver nitrate,and characterized by elemental analysis,IR and XPS.In addition,the thermostability of the compound has been studied by thermoanalysis.The result show that the number of n is about 18-19,which is the same as that in C60(OH)n,the number of m is 9-10,and the temperature of AgmC60(OH)n(NO3)m decompounding to carbon dioxide is lower than that of C60(OH)
基金Project supported by the Research Starting Foundation of Hohai University (Grant No. 2084/40801130)the Natural Science Foundation of Hohai University (Grant Nos. 2008431211 and 2008430311)+2 种基金the Excellent Innovation Personal Support Plan of Hohai Universitythe Basic Scientific Research Foundation of National Centralthe Special Foundation of the Natural Natural Science (Grant No. 10947132)
文摘This paper uses the density functional theory under generalised gradient approximation to analyse the stability, frontier orbitals, bond character, and static linear polarizability of H20@C80F60, which has not been isolated, as well as those of the synthesised H20@C80H60. The H20@C80F60 should be considerably stable by analysing its energy and aromaticity. The inside H and outside X will play different role in the chemical reaction involving H20@C80X60 (X = H and F). The covalence of C H bond is in the order that the inside C H bond of H20@C80F60〉 the inside C H bond of H20@C80H60〉 the outside C-H bond of H20@C80H60, whereas the C-F bond of H20@C80F60 have both the covalent and ionic characters. The static linear polarizabilities of Cso and H20@C80X60 (X =H and F) are all isotropic.
文摘In this paper water-soluble C 60 derivative was iodolabelled radioactively with Iodogen method. The labelled yield was measured by Silica GF254 TLC. The effects of pH value, time, temperature and the amount of Iodogen on the labelled yield were studied. 125 I-C 60 (OH) x O y was purified by Sephadex G-25 column chromatography and then the stability of 125 I-C 60 (OH) x O y was examined. The results showed that the radiochemical purity of 125 I-C 60 (OH) xO y solution with 2% benzylalcohol remained 82.7% after 43h.
文摘The fullerene complex,C60 RuH2(CO)(PPh3),has been prepared and characterize d by elemental analyses,IR and electronic spectra.In addition,the redox property of t he complex has been studied by cyclic voltammetry.The results s how that the reduction potential of C60 RuH2(CO)(PPh3)is more negative than that of C60.Meanwhile,with the extent of the complex reduction get to increace the stability of the complex ion is on the decrease.
基金This work was supported by the National Natural Science Foundation of China (Grant No. 19975066).
文摘The biological behavior of fullerene derivatives shows their considerable potential application in medicine field. To understand the biodistribution of C60 derivatives as drugs or drug carriers, a simple water-soluble derivative C60(OH)x(O)y was labeled with 99mTc. A r-counter and a single photo emission computed tomography (SPECT) were used to assess the biodistribution and metabolism of the labeled compound in mice and rabbits, respectively. The results showed that the compound could be absorbed rapidly by tissues, especially by coronal bone, breastbone, backbone, extremity honeycomb, liver and spleen. The clearance was slow from all tissues except for brain. The compound might be excreted through urine and enteron. The biodistribution shows some difference from that of Yamago et al. In this note, we discuss the possible reason leading to the difference. Further study is needed to find out to what extent the C60 itself determines the biodistribution of derivatives.
基金financially supported by the project Electro Med(No.11-115313) from the Danish Council for Strategic Researchthe National Science Fund for Excellent Young Scholars(No.31622026)+2 种基金the National Natural Science Foundation of China(Nos.U1532122,11435002,21471044)the National Key Research and Development Plan(Nos.2016YFA0201600,2016YFA0203204)CAS Youth Innovation Promotion Association(No.2014031)
文摘Environmental stress factors could lead to the excess generation of reactive oxygen species(ROS) that induces various forms of skin damage related to oxidative stress. Polyhydroxylated fullerene derivative C(60)(OH)n, acting as an effective agent for prevention of skin aging, is widely used in the lotion and sunscreens in the field of cosmetics, but rarely used in the masks. In this study, we prepared C(60)(OH)n loaded nanofibrous membranes to protect human keratinocyte cells from ROS-associated damage and suppress the elevation of intracellular ROS and Ca(2+) along with the apoptotic cell death. Two FDAapproved biodegradable polymers, PLGA and PCL, have been used for making the electrospun nanofibers,with C(60)(OH)n added to the polymers as an antioxidant. The nanofibrous membranes with good biocompatibility might be potentially applied in clinical practice to reduce skin aging.