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1.
Book Reviews     
Book reviewed in this article:
Picosecond Phenomena III. Edited by K. B. EISENTHAL, R. M. HOCHSTRASSER, W. KAISER and A. LAUBERAU. Springer Series in Chemical Physics, Vol. 23. Springer-Verlag, Berlin, 1982. 401 pp. 26.40.
Synthetic and Degradative Process in Marine Macrophytes. Edited by L. M. SRIVASTAVA. Walter de Gruyter, 1982. 296 pp.
Plants and The Daylight Spectrum. Edited by H. SMITH. Academic Press, London, 1981. 508 + xix pp. 45.50.  相似文献   

2.
Published enthalpy data for simple boron compounds, mostly containing trigonally-coordinated boron atoms, have been used to calculate bond enthalpy terms E(B-X), for their B-X bonds (X = N, O, F, Cl or Br) that vary with their bond order, n(B-X), according to the relationship E(B-X) = A[n(B-X)]m. Values of the constants A (the bond enthalpy term for a single bond) and m depend on X as follows:

References

A. Finch and P.J Gardner Prog. Boron Chem. 3 (1969), p. 177.N.N. Greenwood In: A.F. Trotman-Dickenson, Editor, Comprehensive Inorganic Chemistry 1, Pergamon Press, Oxford (1973), p. 665.G.E. Coates, M.L.H. Green, P. Powell and K. Wade In: Principles of Organometallic Chemistry, Methuen, London (1971), p. 86.L. Pauling In: (3rd Edn ed.),Nature of the Chemical Bond, Cornell, New York (1970) Chap. 7 .W. Condy J. Chem. Phys. 15 (1947), p. 305.H.O. Jenkins J. Am. Chem. Soc. 77 (1955), p. 3168. Full Text via CrossRef | View Record in Scopus | Cited By in Scopus (0)J.C. Earl Tetrahedron 9 (1960), p. 65. Abstract | PDF (151 K) | View Record in Scopus | Cited By in Scopus (1)J.P. Fackler and D. Coucouvanis Inorg. Chem. 7 (1968), p. 181. Full Text via CrossRef | View Record in Scopus | Cited By in Scopus (0)A. Julg J. Chim. Phys. Physico-Chim. Biol. 65 (1968), p. 541.J. Stals Rev. Pure Appl. Chem. 20 (1970), p. 1.G. Haefelinger Tetrahedron 26 (1970), p. 2469.G. Haefelinger Chem. Ber. 103 (1970), p. 2902.G. Haefelinger Chem. Ber. 103 (1970), p. 2922.G. Haefelinger Chem. Ber. 103 (1970), p. 2941.G. Haefelinger Chem. Ber. 103 (1970), p. 3289.P.A. Koz'min Dokl. Akad. Nauk SSSR 206 (1972), p. 1384.C.E. Housecroft, K. Wade and B.C. Smith J. Chem. Soc. Chem. Comm. (1978), p. 765. Full Text via CrossRef | View Record in Scopus | Cited By in Scopus (1)C.E. Housecroft, K. Wade and B.C. Smith J. Organometal. Chem. 170 (1979), p. C1. Abstract | PDF (229 K) | View Record in Scopus | Cited By in Scopus (7)C.E. Housecroft and K. Wade Inorg. Nucl. Chem. Lett. 15 (1979), p. 339. Article | PDF (181 K) | View Record in Scopus | Cited By in Scopus (3)C.E. Housecroft, R. Snaith and K. Wade Inorg. Nucl. Chem. Lett. 15 (1979), p. 343. Article | PDF (180 K) | View Record in Scopus | Cited By in Scopus (1)J.A. Kerr and A.F. Trotman-Dickenson In: R.C. Weast and M.J. Astle, Editors, (59th Edn ed.),Handbook of Chemistry and Physics, Chemical Rubber Company, Cleveland, Ohio (1978-1979), pp. F–236.D.D. Wagman, W.H. Evans, V.B. Parker, I Halow, S.M. Bailey and R.H. Schumm In: Selected values of Thermodynamic Properties, U.S. Department of Commerce, Washington, D.C. (1968) National Bureau of Standards Technical Note 270-3 .J.D. Dill, P. von R. Schleyer and J.A. Pople J. Am. Chem. Soc. 97 (1975), p. 3402. Full Text via CrossRef | View Record in Scopus | Cited By in Scopus (53)M.J.S. Dewar and M.L. McKee J. Am. Chem. Soc. 99 (1977), p. 5231. Full Text via CrossRef | View Record in Scopus | Cited By in Scopus (61)J.B. Pedley and J. Rylance In: Sussex-N. P. L Computer Analysed Thermochemical Data: Organic and Organometallic Compounds, University of Sussex (1977).J.A. Kerr and A.F. Trotman-Dickenson In: R.C. Weast and M.J. Astle, Editors, (59th Edn ed.),Handbook of Chemistry and Physics, Chemical Rubber Company, Cleveland, Ohio (1978-1979), pp. F–244.D.C. McKeen Chem. Soc. Rev. 7 (1978), p. 399.C.D. Good and D.M. Ritter J. Am. Chem. Soc. 84 (1962), p. 1162. Full Text via CrossRef | View Record in Scopus | Cited By in Scopus (17)H. Nöth and B. Wrackmeyer Nuclear Magnetic Resonance Spectroscopy of Boron Compounds, Springer, Heidelberg (1978).D.R. Stull and H. Prophet In: (2nd Edn ed.),JANAF Thermochemical Tables, U.S. Department of Commerce, Washington, D.C. (1971) NSRDS-NBS 37 .A. Sommer, D. White, M.J. Linevsky and D.R. Mann J. Chem. Phys. 38 (1963), p. 87. Full Text via CrossRef | View Record in Scopus | Cited By in Scopus (15)W. Weltner and J.R.W. Warn J. Chem. Phys. 37 (1962), p. 292. Full Text via CrossRef | View Record in Scopus | Cited By in Scopus (12)J.B. Holbrook Ph.D. Thesis, University of London (1975).B.C. Smith and L. Thakur Nature (London) 208 (1965), p. 74. Full Text via CrossRef | View Record in Scopus | Cited By in Scopus (0)B.C. Smith, L. Thakur and M.A. Wassef J. Chem. Soc. (A) (1967), p. 1616. Full Text via CrossRefM.V. Kilday, W.H. Johnson and E.J. Prosen J. Res. Nat. Bur. Stand. 65A (1961), p. 101.  相似文献   

3.
BOOK REVIEW     
Edited by M. J. Clarke, P. Hemmerich, C. K. Jorgensen, J. B. Goodenough, J. A. Ibers, J. B. Neilands, D. Reinen, R. Weiss and R. J. P. Williams, Springer-Verlag, Berlin  相似文献   

4.
Combinations of flow-injection techniques with flame atomic absorption spectrometry (a.a.s.) and inductively-coupled plasma/atomic emission spectrometry (i.c.p./a.e.s.) are reviewed in the general context of agricultural and environmental analysis. The flow-injection systems are valuable for sample introduction; appropriate dispersion control allows the analysis of solutions containing as much as 40% (w/v) urea or phosphate in fertilizers. A study on the determination of cadmium in soil extracts by on-line ion-exchange preconcentration and flame a.a.s. detection is described. The interpolative standard-addition method with i.c.p./a.e.s. detection is outlined. Improvements in the determinations of selenium in environmental samples by hydride-generation a.a.s. and of mercury by cold-vapour a.a.s. are reported.  相似文献   

5.
Separation of biopolymers is an obvious application of capillary electrochromatography (CEC) technology, since speed and resolution should increase significantly over high-performance liquid chromatography (HPLC). All too often, HPLC chromatograms of polymers show poorly resolved envelopes of overlapping peaks from oligomers. The practical limitation of column length and pressure drop has hindered development of high resolution separations of many polymers in HPLC. However, this generally applies only to packed beds of small particles, and not to continuous (or monolithic) beds, as introduced by Hjerten et al. [S. Hjerten, Ind. Eng. Chem. Res. 38 (1999) 1205; S. Hjerten, C. Ericson, Y.-M. Li, R. Zhang, Biomed. Chromatogr. 12 (1998) 120; C. Ericson, S. Hjerten, Anal. Chem. 71 (1999) 1621; J.-L. Liao, N. Chen, C. Ericson, S. Hjerten, Anal. Chem. 68 (1996) 3468; S. Hjerten, A. Vegvari, T. Srichaiyo, H.-X. Zhang, C. Ericson, D. Eaker, J. Capillary. Elec. 5 (1998) 13; C. Ericson, J.-L. Liao, K. Nakazato, S. Hjerten, J. Chromatogr. A 767 (1997) 33; S. Hjerten, D. Eaker, K. Elenbring, C. Ericson, K. Kubo, J.-L. Liao, C.-M. Zeng, P.-A. Lidstrom, C. Lindh, A. Palm, T. Srichiayo, L. Valtcheva, R. Zhang, Jpn. J. Electroph. 39 (1995) 1]. Throughout this review we will refer to such packings as monolithic or continuous beds, but they are identical type packings, formed by the in situ polymerization in the capillary or column. CEC capillaries can be much longer, and contain smaller particles than is practical for HPLC. This improves resolution significantly. CEC is able to capitalize on existing mobile phase technology developed over 30 years to improve separations. The requirement that the mobile phase simultaneously promote the separation and mobile phase mobility needs to be considered. In RPLC, this dual role is not much of a problem. It may be much more important in other modes, particularly ion-exchange (IEC). As the field develops, it is becoming clear that CEC is not just a simple extension of HPLC. Instruments, column technology and operating optima are clearly different than HPLC. CEC will develop into its own unique field. Open tubular HPLC is almost precluded by the high pressures required for forcing liquids through 10 microm or smaller capillaries. Electroosmotic pumping (EOF) avoids the pressure constraints and provides better flow profiles. Compared to HPCE, the ability to interact with the stationary phase may enable separations that would be difficult with electrophoresis alone. Since the mobile phase can be less complex than micellar electrokinetic chromatography (MEKC), CEC also avoids the problem of high background signals from the micelle forming compounds. Thus CEC-MS (mass spectrometry) is expected to be even more powerful than HPCE-MS. The fortuitous, simultaneous development of matrix assisted laser desorption-time of flight MS (MALDI-TOF-MS) technology will enable extension of the mass range to above 100 000 Da. Lack of familiarity is the perhaps the largest liability of CEC compared to other techniques. This paper critically compares the state-of-the-art of CEC with HPLC and HPCE, with a particular emphasis on separation of biopolymers. The goal is to help the reader overcome the fear of the unknown, in this case, CEC.  相似文献   

6.
    
Ohne ZusammenfassungDie Mitglieder des Standardisierungskomitees der ICTA: Prof. C. Mazières (Frankreich); Prof. T. Sudo (Japan); R. S. Forsyth (Schweden); H. G. Wiedemann (Schweiz); Dr. I. S. Rassonskaya (UdSSR); C. J. Keattch (Großbritannien) und Dr. P. D. Garn (USA). Andere Delegierte des Komitees: Prof. L. G. Berg (UdSSR); Dr. R. C. Mackenzie (Großbritannien); Dr. J. P. Redfern (Großbritannien) und Dr. S. Gordon (USA). Der Vorsitzende: Dr. H. G. McAdie (Canada).  相似文献   

7.
BOOK REVIEWS     
Book reviewed in this article:
The Eye. Edited by H. Davson.
Radiation Research — Biochemical. Chemical ond Physical Perspectives . Edited by O. F. Nygaard, H. I. Adler and W. K. Sinclair.  相似文献   

8.
BOOK REVIEWS     
Book reviewed in this article:
Luminescence from Biological and Synthetic Macromolecules , ( Ann. N Y Acad. Sci. 366 , 1981) Edited by H. M orawetz and I. Z. S teineerg .
Lasers in Photomedicine and Photobiology , Proceedings of the European Physical Society. Quantum Electronics Division. Conference. Florence, Italy. September 3–6, 1979. Edited by R. P ratesi and C. A. S acchi.  相似文献   

9.
BOOK REVIEWS     
Book reviewed in this article:
DNA Repair. A Laboratory Manual of Research Procedures. Vol. 2. Edited by E. C. F riedberg and P. C. H anawalt , Marcel Dekker,
Nucleic Acids: The Vectors of Life. Edited by B. P ullman and J. J ortner , D. Reidel Publishing Company,
Specialist Periodical Reports. Volume 13. Photochemistry. Edited by D. Bryce-Smith (University of Reading).  相似文献   

10.
This invited Team Profile was created by the above group. They recently published an article on the introduction of a hybrid separation technique, referred to as Dual-Gradient Unified Chromatography (DGUC), enabling simultaneous multicomponent analysis of both small and large molecules across a wide polarity range in single experimental runs. DGUC lays the foundation for the next generation of hybrid chromatographic techniques with the deployment of universal elution profiles obtained via multi-eluent blending beyond traditional separation modes. “Dual-Gradient Unified Chromatography: A New Paradigm for Versatility in Simultaneous Multicomponent Analysis”, G. L. Losacco, R. Bennett, I. A. Haidar Ahmad, R. C. Barrientos, J. O. DaSilva, Y. Dong, A. W. Schuppe, Z. Wang, S. Aiken, I. Mangion, V. K. Aggarwal, E. L. Regalado, Angew. Chem. Int. Ed . 2022, e202208854 ; Angew. Chem . 2022, e202208854 .  相似文献   

11.
Based on the corrected Hohenberg-Kohn-Sham total energy density functional [Y. A. Zhang and Y. A. Wang, J. Chem. Phys. 130, 144116 (2009)], we have developed two linear-expansion shooting techniques (LIST)- direct LIST (LISTd) and indirect LIST (LISTi), to accelerate the convergence of self-consistent field (SCF) calculations. Case studies show that overall LISTi is the most robust and efficient algorithm for accelerating SCF convergence, whereas LISTd is advantageous in the early stage of an SCF process. More importantly, LISTi outperforms Pulay's direct inversion in the iterative subspace (DIIS) [P. Pulay, J. Comput. Chem. 3, 556 (1982)] and its two recent improvements, energy-DIIS [K. N. Kudin, G. E. Scuseria, and E. Cance?s, J. Chem. Phys. 116, 8255 (2002)] and augmented Roothaan-Hall energy-DIIS [X. Hu and W. Yang, J. Chem. Phys. 132, 054109 (2010)].  相似文献   

12.
庄林 《电化学》2016,22(2):209
Heterogeneous Spin States in Ultrathin Nanosheets Induce Subtle Lattice Distortion to Trigger Efficient Hydrogen Evolution Y. Liu, X. Hua, C. Xiao, T. Zhou, P. Huang, Z. Guo, B. Pan, Y. Xie J. Am. Chem. Soc. DOI: 10.1021/jacs.6b00858 Mn掺杂CoSe2纳米片,使晶格发生畸变,产生更多的边沿活性位,对氢析出反应(HER)表现高的催化活性,交换电流密度为68.3 μA•cm-2.  相似文献   

13.
BOOK REVIEWS     
Book reviewed in this article:
Advances in Radiation Biology, Editors: J. T. Lett and H. Adler,
Advances in Photochemistry. Vol. 9. Edited by J. N. Pitts, Jr., G. S. Hammond, and K. Gollnick.  相似文献   

14.
This invited Team Profile was created by the Zheng Lab (UHN, Toronto, Canada ), the CEPOF BioPhotonics Lab (USP, São Carlos, Brazil) , and the BiOPI Lab (UC Chile, Santiago, Chile) . They recently published an article on an Indocyanine Green (ICG) nanoemulsion in which 100 % dimerization and J-aggregation occurs spontaneously afford a nanostructured shell of dimeric ICG (Nano-dICG). This material demonstrates superior photothermal conversion efficiency, photostability, and structure stability over ICG, giving an ultra-stable phototheranostic platform for photoacoustic imaging and effective photothermal therapy. “Nanostructure-Driven Indocyanine Green Dimerization Generates Ultra-Stable Phototheranostics Nanoparticles”, N. Kwon, G. O. Jasinevicius, G. Kassab, L. Ding, J. Bu, L. P. Martinelli, V. G. Ferreira, A. Dhaliwal, H. H. L. Chan, Y. Mo, V. S. Bagnato, C. Kurachi, J. Chen, G. Zheng, H. H. Buzzá, Angew. Chem. Int. Ed. 2023 , 62, e202305564 .  相似文献   

15.
BOOK REVIEWS     
Advances in Photochemistry, Volume 14. Edited by D. H. Volman, G. S. Hammond and K. Gollnick. Wiley/Interscience, New York, 1988
Department of Chemistry Korea Advanced Institute of Science and Technology P.O. Box ISO Cheongyangni Seoul 130–650, Korea
Photochemistry, Volume 18. Senior Reporter–D. Bryce-Smith. The Royal Society of Chemistry, London, August 1987
Department of Chemistry Korea Advanced Institute of Science and Technology P. O. Box 150 Chongyangni Seoul 130–650, Korea
Photochemistry, Volume 19. Senior Reporter–D. Bryce-Smith and A. Gilbert. The Royal Society of Chemistry, London, July 1988
Department of Chemistry Korea Advanced Institute of Science and Technology P.O. Box 150 Chongyangni Seoul 130–650, Korea
Laser Picosecond Spectroscopy and Photochemistry of Biomolecules. Edited by V. S. Letokhov, Adam Hilger, Bristol and Philadelphia
University of Chicago Department of Chemistry Chicago, IL 60637 USA
The Science of Photobiology. Second Edition. Edited by Kendric Smith. Plenum Press, New York, NY
Department of Biochemistry. 113 Biochemistry Hall University of Nebraska Lincoln.' NE 6X583–071H USA  相似文献   

16.
BOOK REVIEWS     
Book reviewed in this article:
Chemical and Biochemical Applications of Lasers. Volume II. Edited by C. B radley M oore
Laser Spectroscopy III, Springer Series in Optical Spectroscopy. Volume 7. Edited by J. L. H all and J. L. C arlsten
Photosynthesis. Second Edition, D. O. H all and K. K. R ao
The Amphibian Visual System. Edited by K atherine V. F ite
The Physiology and Biochemistry of Seed Dormancy and Germination. Edited by A. A. K han
Phytochrome and Plant Growth. Studies in Biology NO. 68. Edited by R. E. K endrick and B. F rankland
The Science of Photobiology. Edited by K endric C. S mith
Photosensitized Reactions, By M. K oizumi , S. K ato , N. M ataga , T. M atsuura and Y. U sui
Bioenergetics of Membranes, Edited by L. P acker , G. C. P apageorgiou and A. T rebst  相似文献   

17.
Book Reviews     
Abstract

Aquatic Chemistry: An Introduction Emphasizing Chemical Equilibria in Natural Waters. Werner Stumm and James L. Morgan. Wiley-Interscience, New York, London, Sydney, Toronto 1971. XV+582 pages. Reviewed by R. P. Walser, Quality Control, Pharmaceutical Division, Sandoz Ltd., Basle, Switzerland

Residue Reviews. Edited by F. A. Günther, Springer Verlag, New York, Vols. 34, 38, and 40, 1971. Reviewed by O. Hutzinger, Atlantic Regional Laboratory, National Research Council of Canada, Halifax, Nova Scotia, Canada.

Determination of organophosphorus pesticide residues in fruits and vegetables, on the Swedish market from 1964 to 1968, by S. Renvall and M. Âkerblom (Vol. 34, p. 1).

Pesticide residue analysis in the presence of Polychlorobiphenyls (PCB), by L. M. Reynolds (Vol. 34, p. 27).

Development of the Food and Drug Administration's method of analysis for multiple residues of organochlorine pesticides in foods and feeds, by J. A. Burke (Vol. 34, p. 59).

Carbamate insecticide residues in plant material: Determination by gas chromatography, by I. H. Williams (Vol. 38, p. 1).

Analytical methods for the determination of fumigants, by B. Malone (Vol. 38, p. 21).

Recent applications of mass spectrometry and combined gas chromatographymass spectrometry to pesticide residue analysis, by F. J. Biros (Vol. 40, p. 1).  相似文献   

18.
对近两年国内各个领域的学者在气相色谱方面的研究和应用作了综述,本综述分3部分叙述,本篇为第 部分,包括:8.气相色谱在食品功效成分和其他成分分析中的应用,9.气相色谱酒分析中的应用,1 0 .气相色谱在污染物分析中的应用,1 1 .气相色谱在石油、石油化工分析中的应用,1 2 .气相色谱在化学品生产分析中的应用  相似文献   

19.
20.
    
Ohne ZusammenfassungNach einem von Herrn Prof. Osborne freundlichst zugesandten Abdruck der No. 1 des XVII. Bds. des Amer. Journ. of Physiology. vom 1. Febr. 1905 übersetzt und bearbeitet von Dr. Griessmayer.  相似文献   

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