The Journal of Coordination Chemistry publishes the results of original investigations involving the physical and chemical properties, syntheses and structures of coordination compounds. Its scope may be defined as being concerned with the interactions of organic and inorganic ligands with metal centres. Material on applications of coordination compounds may be included when relevant. Short reviews of current research in coordination chemistry will also be considered for publication. In addition to full articles, preliminary communications of results (up to 1000 words) may be submitted. The journal intends to shorten considerably the time between receipt, acceptance and publication of such articles in order to provide a mechanism for speedy publication of preliminary accounts of original and significant findings in coordination chemistry. Short articles that lack urgency are also acceptable to the journal and will be published in due course, as long as the desire to avoid multiple publication is met.The Editor also welcomes review articles in all areas of coordination chemistry, including inorganic solid state chemistry, organometallic chemistry and bioinorganic chemistry, as well as applications to analytical chemistry, catalysis, industrial chemistry and materials science. Articles may focus primarily on the metal, the ligand or the application. Given the limitation in length for the reviews, two extreme cases can be envisaged. Topics of emerging interest should be developed fully from basics. Careful attention must be paid to the way in which the new area relates to the field in general. Reviews of well-established subjects should collect developments from the literature and take a critical view of recent activities. Books for review should be sent to the Editor, at the address here.All published research articles in the Journal of Coordination Chemistry have undergone rigorous peer review, based on initial editor screening and anonymized refereeing by at least two expert reviewers.DisclaimerTaylor & Francis makes every effort to ensure the accuracy of all the information (the "Content") contained in its publications. However, Taylor & Francis and its agents and licensors make no representations or warranties whatsoever as to the accuracy, completeness or suitability for any purpose of the Content and disclaim all such representations and warranties whether express or implied to the maximum extent permitted by law. Any views expressed in this publication are the views of the authors and are not the views of Taylor & Francis.
The journal offers a common reference and publication source for workers engaged in research on the experimental and theoretical aspects of crystal growth and its applications, e.g. in devices. Experimental and theoretical contributions are published in the following fields: theory of nucleation and growth, molecular kinetics and transport phenomena, crystallization in viscous media such as polymers and glasses; crystal growth of metals, minerals, semiconductors, superconductors, magnetics, inorganic, organic and biological substances in bulk or as thin films; molecular beam epitaxy, chemical vapor deposition, growth of III-V and II-VI and other semiconductors; characterization of single crystals by physical and chemical methods; apparatus, instrumentation and techniques for crystal growth, and purification methods; multilayer heterostructures and their characterisation with an emphasis on crystal growth and epitaxial aspects of electronic materials. A special feature of the journal is the periodic inclusion of proceedings of symposia and conferences on relevant aspects of crystal growth.Benefits to authorsWe also provide many author benefits, such as free PDFs, a liberal copyright policy, special discounts on Elsevier publications and much more. Please click here for more information on our author services.Please see our Guide for Authors for information on article submission. If you require any further information or help, please visit our support pages: http://support.elsevier.com
The Journal of Cultural Heritage is devoted to:- Safeguard, Conservation and exploitation of cultural heritage- Analyses and preservation of biodiversity- Sociological and economical analyses- Computer sciences in Cultural heritageThe journal focuses on a specific new methodology in cultural heritage conservation or exploitation. It also presents the latest news concerning public administration bodies and the many activities proposed by international authorities.Occasionally, thematic issues are published as electronic supplements, available on ScienceDirect.
Publication office: Taylor & Francis, Inc., 325 Chestnut Street, Suite 800, Philadelphia, PA 19106.
The Journal of Electroanalytical Chemistry is the foremost international journal devoted to the interdisciplinary subject of electrochemistry in all its aspects, theoretical as well as applied.Electrochemistry is a wide ranging area that is in a state of continuous evolution. Rather than compiling a long list of topics covered by the Journal, the editors would like to draw particular attention to the key issues of novelty, topicality and quality. Papers should present new and interesting electrochemical science in a way that is accessible to the reader. The presentation and discussion should be at a level that is consistent with the international status of the Journal. Reports describing the application of well-established techniques to problems that are essentially technical will not be accepted. Similarly, papers that report observations but fail to provide adequate interpretation will be rejected by the Editors. Papers dealing with technical electrochemistry should be submitted to other specialist journals unless the authors can show that their work provides substantially new insights into electrochemical processes.Benefits to authorsWe also provide many author benefits, such as free PDFs, a liberal copyright policy, special discounts on Elsevier publications and much more. Please click here for more information on our author services.Please see our Guide for Authors for information on article submission. If you require any further information or help, please visit our support pages: http://support.elsevier.com
The Journal of Electron Spectroscopy and Related Phenomena publishes experimental, theoretical and applied work in the field of electron spectroscopy and electronic structure, involving techniques which use high energy photons (>10 eV) or electrons as probes or detected particles in the investigation.The journal encourages contributions in the general area of atomic, molecular, ionic, liquid and solid state spectroscopy carried out using electron impact, synchrotron radiation (including free electron lasers) and short wavelength lasers. Papers using photoemission and other techniques, in which synchrotron radiation, Free Electron Lasers, laboratory lasers or other sources of ionizing radiation, combined with electron velocity analysis are especially welcome. The materials properties addressed include characterization of ground and excited state properties as well as time resolved electron dynamics.The individual techniques of electron spectroscopy include photoelectron spectroscopy of both outer and inner shells; inverse photoemission; spin-polarised photoemission; time resolved 2-photon photoemission, resonant and non-resonant Auger spectroscopy including ion neutralization studies; edge techniques (EXAFS, NEXAFS,...) , resonant and non-resonant inelastic X-ray scattering (RIXS), spectro-microscopy, high resolution electron energy loss spectroscopy; electron scattering and resonance electron capture; electron spectroscopy in conjunction with microscopy; penning ionization spectroscopy including scanning tunneling spectroscopy; theoretical treatments of the photoemission, X-ray emission, Auger, energy loss and Penning ionization processes. Contributions on instrumentation and technique development, date acquisition - analysis - quantification are also welcome.Subject areas covered include spectroscopic characterization of materials and processes concerning:- surfaces, interfaces, and thin films;- atomic and molecular physics, clusters;- semiconductor physics and chemistry;- materials for photovoltaics;- materials science including: metal surfaces, nanoparticles, ceramics, strongly correlated systems, polymers, biomaterials and other organic films;- catalysis
Publication office: Taylor & Francis, Inc., 325 Chestnut Street, Suite 800, Philadelphia, PA 19106.
Journal of Natural Gas Chemistry has renamed as Journal of Energy Chemistry starting from 2013During the past two decades, especially in the last decade, under the influence of many factors such as political, economic and social and environmental aspects, the trend of the energy exploration, research and applications has been extensively extended on one side, and are taking place deeply changes in the dramatic ups and downs on the other side. It is again revealed and confirmed that competition and innovation are the driving force for the development of science and technology. In consideration of this situation, we decide after more than two years of preparation to officially rename the Journal of Natural Gas Chemistry as the Journal of Energy Chemistry from 2013.Aims and ScopeThe Journal of Energy Chemistry is a publication that mainly reports on creative researches and innovative applications of chemical conversions of fossil energy, electrochemical energy and hydrogen energy, as well as the conversions of biomass and solar energy related with chemical issues to promote academic exchanges in the field of energy chemistry and to accelerate the exploration,research and development of energy science and technologies.The Journal functions as a medium for reporting original research papers dealing with topics in the fields of energy chemistry. It is devoted to up-to-date progress in the following fields all over the world:• Optimized chemical utilization of both conventional and unconventional fossil energies• Research and utilization of hydrogen energy• Conversion and storage of electrochemical energy• Capturing, storage and chemical utilization of CO2• New materials and nanotechnologies related to energy utilization• Chemical conversion of biomasses• Chemical approaches related to photo-catalysis
Journal of Enzyme Inhibition and Medicinal Chemistry is an international and interdisciplinary vehicle publishing new knowledge and findings on enzyme inhibitors and inhibitory processes and agonist/antagonist receptor interactions in the development of medicinal and anti-cancer agents and an understanding of their action.The Journal will publish research papers, short communications and reviews on current developments in enzymology, cell biology, chemical biology, microbiology, physiology, pharmacology leading to drug design, molecular recognition processes and distribution and metabolism of biologically active compounds. Among the various fields of study, special attention is given to structure and molecular aspects, enzyme kinetics and inactivation mechanisms, structure-activity relationships (QSAR, graphic techniques), drug development studies, drug release and control mechanisms in metabolic processes.Read More: http://informahealthcare.com/page/enz/Description.
The journal of Essential oil bearing(JEOBP) was started by late Mr.Har krishan lal bhalla in1998 utilization of essential oil bearning plants ans sharing the intrnational reserch experiencein this field.the aim of the journal is to benefit to all who have intartet in essential oil-bearing plants.it is subscribed and peer-reviewed journalNow 6 issue per year are published and are available online.
TheJournal of Essential Oil Research (JEOR)is a scientific journal devoted to all facets of pure and applied studies on essential oils and plant volatiles. Recognized by the I.S.I.
The Journal of Ethnopharmacology is dedicated to the exchange of information and understandings about people's use of plants, fungi, animals, microorganisms and minerals and their biological and pharmacological effects based on the principles established through international conventions. Early people confronted with illness and disease, discovered a wealth of useful therapeutic agents in the plant and animal kingdoms. The empirical knowledge of these medicinal substances and their toxic potential was passed on by oral tradition and sometimes recorded in herbals and other texts on materia medica. Many valuable drugs of today (e.g., atropine, ephedrine, tubocurarine, digoxin, reserpine) came into use through the study of indigenous remedies. Chemists continue to use plant-derived drugs (e.g., morphine, taxol, physostigmine, quinidine, emetine) as prototypes in their attempts to develop more effective and less toxic medicinals.In recent years the preservation of local knowledge, the promotion of indigenous medical systems in primary health care, and the conservation of biodiversity have become even more of a concern to all scientists working at the interface of social and natural sciences but especially to ethnopharmacologists. Recognizing the sovereign rights of States over their natural resources, ethnopharmacologists are particularly concerned with local people's rights to further use and develop their autochthonous resources.Accordingly, today's ethnopharmacological research embraces the multidisciplinary effort in the:• documentation of indigenous medical knowledge,• scientific study of indigenous medicines in order to contribute in the long-run to improved health care in the regions of study, as well as• search for pharmacologically unique principles from existing indigenous remedies.The Journal of Ethnopharmacology publishes original articles concerned with the observation and experimental investigation of the biological activities of plant and animal substances used in the traditional medicine of past and present cultures. The journal will particularly welcome interdisciplinary papers with an ethnopharmacological, an ethnobotanical or an ethnochemical approach to the study of indigenous drugs. Reports of anthropological and ethnobotanical field studies fall within the journal's scope. Studies involving pharmacological and toxicological mechanisms of action are especially welcome. Clinical studies on efficacy will be considered if contributing to the understanding of specific ethnopharmacological problems. The journal welcomes review articles in the above mentioned fields especially those highlighting the multi-disciplinary nature of ethnopharmacology. Commentaries are by invitation only.
International, multidisciplinary, the Journal of Experimental Nanoscience provides a showcase for advances in the experimental sciences underlying nanotechnology and nanomaterials.The Journal of Experimental Nanoscience exists to bring together the most significant papers making original contributions to nanoscience in a range of fields including biology and biochemistry, physics, chemistry, chemical electrical and mechanical engineering, materials, pharmaceuticals and medicine. The aim is to provide a forum in which cross fertilization between application areas, methodologies, disciplines, as well as academic and industrial researchers can take place and new developments can be encouraged.The Journal of Experimental Nanoscience is of interest to all researchers working in the field of nanoscience and its applications to nanotechnology and nanomaterials.All published research articles in this journal have undergone rigorous peer review, based on initial editor screening and anonymized refereeing by at least two expert referees.View the most downloaded articles from the 2006 volume.DisclaimerTaylor & Francis makes every effort to ensure the accuracy of all the information (the "Content") contained in its publications. However, Taylor & Francis and its agents and licensors make no representations or warranties whatsoever as to the accuracy, completeness or suitability for any purpose of the Content and disclaim all such representations and warranties whether express or implied to the maximum extent permitted by law. Any views expressed in this publication are the views of the authors and are not the views of Taylor & Francis.
The Journal of Fire Protection Engineering is a rigorously peer-reviewed international journal that is unique in fire engineering by virtue of articles being of immediate use to its readership.To accomplish this, the Journal provides fire protection engineers, fire safety engineers and other engineering professionals with clear descriptions both of state-of-the-art engineering methods and new data obtained from modern measurement or survey techniques.Examples and detailed case studies demonstrate how these advanced methods and valuable data can be applied to the fire safety design and evaluation of buildings and other structures (e.g., bridges, tunnels, etc.) and transportation vehicles (e.g. rail, ship and aircraft).Each issue contains in-depth articles by both researchers and practitioners on advances in the following key engineering areas:·Fire behavior modeling (calculating the behavior of flames and smoke in enclosed spaces and in the open)·Fire impact modeling (calculating the impact of flames and smoke both on occupants and on the built environment, including structural effects)·Fire detection modeling (calculating the response and reliability of detection devices)·Fire protection modeling (evaluating the effectiveness of flame/smoke control with various engineering strategies, including techniques to predict how area flooding, sprinkler activation, smoke venting and compartmentation control a fire)·Reliability of fixed fire protection, including corrosion control and maintenance strategies·Approximate or simplified engineering calculations of fire behavior, fire impact, fire detection and fire protection.·Occupant behavior modeling (predicting the behavior of occupants during a fire, including evacuation response time and occupant response to visual and audio alarms and signage).·Characterization of fire and occupant scenarios for engineering analysis·Engineering risk analysis and risk evaluation of fire scenarios in terms of life safety, property cost, business interruption and environmental damage·Case studies of performance-based fire safety design and assessment·Procedures for obtaining engineering data from test methods (e.g., fire behavior data from tests on combustible materials; fire impact data from tests on structural elements; fire protection data from tests of fire interactions with control measures, occupant behavior data from occupant surveys or evacuation drills)·Interpretation of data from realistic or full-scale fire tests or post-fire surveys·Literature surveys and book reviews covering the preceding topicsInformation provided in articles generally is based on documented research or design activity, and when appropriate, well illustrated by photographs, diagrams and charts. New developments from around the world are published in a form that allows for immediate application to engineering problem solving.